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GAS DEHYDRATION / INTERACTIVE 3D

Molecular-sieve gas-dehydration vessel

Inspect a sectional adsorption vessel with 114 individually selectable pellet markers, 38 support-ball markers, a crossed screen and two genuinely perforated plates.

Static preview of the molecular-sieve gas-dehydration vessel schematic
Loading the 3D model…

Drag to orbit · Scroll or pinch to zoom · Select a visible part or use the parts list. Keyboard: focus the view and use arrow keys to orbit.

HOW TO READ THIS MODEL

The system, explained.

Molecular-sieve adsorbents can remove water before cryogenic gas processing. Honeywell UOP describes this pretreatment role; Arkema distinguishes molecular-sieve particles from inert support material and bed-support hardware. This original static vessel separates those roles, with open upper and lower gas boundaries, a distribution marker, sparse enlarged pellets, support balls and an open screen above a support deck. Compare it with the glycol-contactor lesson: the two illustrations show different dehydration approaches, without selecting either for a particular gas stream. A real cyclic system would need other beds, regeneration equipment and a designed valve arrangement.

Model scope and limits

Original static teaching assembly with invented proportions and sparse enlarged external particle shapes. Microscopic pores, actual packing density and adsorbent grades are not depicted. Two gas boundaries remain open; the side access cover and thermowell markers remain solid. The two perforated disks, screen, supports and instrument locations do not specify loading, retention, capacity, breakthrough, dew point, pressure loss, regeneration conditions, valve sequence, relief, pressure rating, materials, fabrication or safe operation.

Source links support further study; no affiliation or endorsement is implied.

CHECK YOUR UNDERSTANDING

Do the visible pellets prove this vessel meets a cryogenic water requirement?

Choose an answer

GUIDED COMPONENT STUDY

Trace the system.

Read each explanation, then focus its component in the explorer. This is a learning route through the model, with no operating or maintenance sequence.

  1. Start at an open gas boundary

    A hollow neck passes through an actual head opening. Its location does not specify adsorption or regeneration direction, inlet composition or a valve sequence.

  2. Inspect the complete enclosure

    The initial section exposes the interior. Restore the full enclosure with the section control; its thickness and shape are invented and unrated.

  3. Compare a distribution marker

    The separate disk has real enlarged holes. Their pattern illustrates a distribution role without proving uniform gas flow.

  4. Select an adsorbent particle

    One of 114 individually selectable, enlarged and sparsely arranged external particle markers. Molecular pores, packed-bed density, grade and water capacity are absent.

  5. Distinguish support material

    One of 38 enlarged support-ball markers. This separate role does not prescribe ceramic grade, particle size or loading arrangement.

  6. Find the open screen

    One of 26 separate crossed members. The visible gaps do not qualify particle retention, mesh grade, edge sealing or structural strength.

  7. Read the lower deck

    Real holes distinguish this support disk from a closed vessel head. No pressure-drop or bed-load calculation is supplied.

  8. Inspect an instrument intrusion

    The solid marker passes through a separate shell opening. It is not a sensor reading, selected thermowell, proven seal or suitable insertion length.

  9. Compare the other gas boundary

    A second open neck aligns with the lower head bore. The two boundaries alone do not make a complete adsorption and regeneration circuit.

  10. Finish at the closed access cover

    The separate cover remains solid in the complete model. Its presence offers no inspection, opening or maintenance procedure.

ACCESSIBLE COMPONENT REFERENCE

Every part, in plain language.

Search all components ↗Model provenance ↗
Base frame

Illustrative support frame; foundations and structural design vary.

Complete hollow adsorption-vessel wall

Full vessel enclosure with five true side penetrations. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Closed side access hollow connection neck

Distinct instrument or access boundary through a real shell bore. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Closed side access bored rim

Unrated connection rim; no mating joint or transmitter. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Upper differential-pressure hollow connection neck

Distinct instrument or access boundary through a real shell bore. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Upper differential-pressure bored rim

Unrated connection rim; no mating joint or transmitter. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Lower differential-pressure hollow connection neck

Distinct instrument or access boundary through a real shell bore. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Lower differential-pressure bored rim

Unrated connection rim; no mating joint or transmitter. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Upper temperature hollow connection neck

Distinct instrument or access boundary through a real shell bore. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Upper temperature bored rim

Unrated connection rim; no mating joint or transmitter. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Lower temperature hollow connection neck

Distinct instrument or access boundary through a real shell bore. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Lower temperature bored rim

Unrated connection rim; no mating joint or transmitter. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Upper closed head with true gas bore

Flat teaching closure, not a selected pressure-head shape. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Lower closed head with true gas bore

Flat teaching closure, not a selected pressure-head shape. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Upper gas open boundary neck

One gas boundary. Adsorption and regeneration may use different directions and external valve arrangements; no sequence is modeled. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Upper gas open boundary rim

Open gas interface with no selected piping or rated flange. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Lower gas open boundary neck

One gas boundary. Adsorption and regeneration may use different directions and external valve arrangements; no sequence is modeled. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Lower gas open boundary rim

Open gas interface with no selected piping or rated flange. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Closed side access-cover disk

The complete vessel retains a solid separate cover. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Access-cover smooth stud 1

Illustrative external fastener location with no thread or preload. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Access-cover hex nut marker 1

Separate hexagonal marker, not a selected joint. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Access-cover smooth stud 2

Illustrative external fastener location with no thread or preload. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Access-cover hex nut marker 2

Separate hexagonal marker, not a selected joint. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Access-cover smooth stud 3

Illustrative external fastener location with no thread or preload. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Access-cover hex nut marker 3

Separate hexagonal marker, not a selected joint. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Access-cover smooth stud 4

Illustrative external fastener location with no thread or preload. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Access-cover hex nut marker 4

Separate hexagonal marker, not a selected joint. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Access-cover smooth stud 5

Illustrative external fastener location with no thread or preload. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Access-cover hex nut marker 5

Separate hexagonal marker, not a selected joint. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Access-cover smooth stud 6

Illustrative external fastener location with no thread or preload. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Access-cover hex nut marker 6

Separate hexagonal marker, not a selected joint. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Access-cover smooth stud 7

Illustrative external fastener location with no thread or preload. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Access-cover hex nut marker 7

Separate hexagonal marker, not a selected joint. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Access-cover smooth stud 8

Illustrative external fastener location with no thread or preload. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Access-cover hex nut marker 8

Separate hexagonal marker, not a selected joint. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Upper closed-tip thermowell marker

Solid intrusion cue through a separate shell bore. No sensor, temperature value, wall seal or suitable insertion length. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Lower closed-tip thermowell marker

Solid intrusion cue through a separate shell bore. No sensor, temperature value, wall seal or suitable insertion length. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Upper perforated distribution marker

A separate disk with real enlarged openings; the pattern only distinguishes a plate role. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Lower perforated support deck

A separate disk with real enlarged openings; the pattern only distinguishes a plate role. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Lower bed support perimeter seat

Separate annular seat under the deck; attachment and loading unqualified. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Lower deck support beam -0.36

Illustrative beam below the deck, without stress or attachment design. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Lower deck support beam 0.36

Illustrative beam below the deck, without stress or attachment design. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen X member 1

Separate screen member with visible gaps; no selected mesh grade. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen Y member 1

Crossed screen member; no support/retention result. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen X member 2

Separate screen member with visible gaps; no selected mesh grade. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen Y member 2

Crossed screen member; no support/retention result. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen X member 3

Separate screen member with visible gaps; no selected mesh grade. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen Y member 3

Crossed screen member; no support/retention result. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen X member 4

Separate screen member with visible gaps; no selected mesh grade. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen Y member 4

Crossed screen member; no support/retention result. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen X member 5

Separate screen member with visible gaps; no selected mesh grade. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen Y member 5

Crossed screen member; no support/retention result. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen X member 6

Separate screen member with visible gaps; no selected mesh grade. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen Y member 6

Crossed screen member; no support/retention result. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen X member 7

Separate screen member with visible gaps; no selected mesh grade. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen Y member 7

Crossed screen member; no support/retention result. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen X member 8

Separate screen member with visible gaps; no selected mesh grade. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen Y member 8

Crossed screen member; no support/retention result. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen X member 9

Separate screen member with visible gaps; no selected mesh grade. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen Y member 9

Crossed screen member; no support/retention result. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen X member 10

Separate screen member with visible gaps; no selected mesh grade. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen Y member 10

Crossed screen member; no support/retention result. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen X member 11

Separate screen member with visible gaps; no selected mesh grade. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen Y member 11

Crossed screen member; no support/retention result. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen X member 12

Separate screen member with visible gaps; no selected mesh grade. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen Y member 12

Crossed screen member; no support/retention result. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen X member 13

Separate screen member with visible gaps; no selected mesh grade. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Support screen Y member 13

Crossed screen member; no support/retention result. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 1 marker 1

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 1 marker 2

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 1 marker 3

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 1 marker 4

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 1 marker 5

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 1 marker 6

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 1 marker 7

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 1 marker 8

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 1 marker 9

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 1 marker 10

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 1 marker 11

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 1 marker 12

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 1 marker 13

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 1 marker 14

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 1 marker 15

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 1 marker 16

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 1 marker 17

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 1 marker 18

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 1 marker 19

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 2 marker 1

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 2 marker 2

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 2 marker 3

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 2 marker 4

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 2 marker 5

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 2 marker 6

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 2 marker 7

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 2 marker 8

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 2 marker 9

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 2 marker 10

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 2 marker 11

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 2 marker 12

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 2 marker 13

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 2 marker 14

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 2 marker 15

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 2 marker 16

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 2 marker 17

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 2 marker 18

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Inert support-ball layer 2 marker 19

Enlarged sparse ceramic-support role marker, separate from adsorbent. Not a selected grade, size or loading plan. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 1 marker 1

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 1 marker 2

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 1 marker 3

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 1 marker 4

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 1 marker 5

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 1 marker 6

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 1 marker 7

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 1 marker 8

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 1 marker 9

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 1 marker 10

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 1 marker 11

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 1 marker 12

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 1 marker 13

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 1 marker 14

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 1 marker 15

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 1 marker 16

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 1 marker 17

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 1 marker 18

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 1 marker 19

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 2 marker 1

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 2 marker 2

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 2 marker 3

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 2 marker 4

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 2 marker 5

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 2 marker 6

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 2 marker 7

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 2 marker 8

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 2 marker 9

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 2 marker 10

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 2 marker 11

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 2 marker 12

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 2 marker 13

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 2 marker 14

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 2 marker 15

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 2 marker 16

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 2 marker 17

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 2 marker 18

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 2 marker 19

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 3 marker 1

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 3 marker 2

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 3 marker 3

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 3 marker 4

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 3 marker 5

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 3 marker 6

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 3 marker 7

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 3 marker 8

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 3 marker 9

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 3 marker 10

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 3 marker 11

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 3 marker 12

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 3 marker 13

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 3 marker 14

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 3 marker 15

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 3 marker 16

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 3 marker 17

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 3 marker 18

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 3 marker 19

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 4 marker 1

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 4 marker 2

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 4 marker 3

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 4 marker 4

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 4 marker 5

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 4 marker 6

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 4 marker 7

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 4 marker 8

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 4 marker 9

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 4 marker 10

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 4 marker 11

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 4 marker 12

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 4 marker 13

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 4 marker 14

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 4 marker 15

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 4 marker 16

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 4 marker 17

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 4 marker 18

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 4 marker 19

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 5 marker 1

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 5 marker 2

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 5 marker 3

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 5 marker 4

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 5 marker 5

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 5 marker 6

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 5 marker 7

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 5 marker 8

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 5 marker 9

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 5 marker 10

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 5 marker 11

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 5 marker 12

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 5 marker 13

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 5 marker 14

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 5 marker 15

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 5 marker 16

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 5 marker 17

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 5 marker 18

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 5 marker 19

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 6 marker 1

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 6 marker 2

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 6 marker 3

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 6 marker 4

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 6 marker 5

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 6 marker 6

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 6 marker 7

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 6 marker 8

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 6 marker 9

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 6 marker 10

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 6 marker 11

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 6 marker 12

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 6 marker 13

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 6 marker 14

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 6 marker 15

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 6 marker 16

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 6 marker 17

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 6 marker 18

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorbent pellet layer 6 marker 19

Enlarged sparse external pellet shape. Microscopic zeolite pores and actual packed-bed density are not represented. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorber display leg 1

Display support only; no load, thermal-expansion or foundation design. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Bored adsorber display foot 1

Separate display foot with a real enlarged hole. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorber display leg 2

Display support only; no load, thermal-expansion or foundation design. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Bored adsorber display foot 2

Separate display foot with a real enlarged hole. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorber display leg 3

Display support only; no load, thermal-expansion or foundation design. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Bored adsorber display foot 3

Separate display foot with a real enlarged hole. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Adsorber display leg 4

Display support only; no load, thermal-expansion or foundation design. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.

Bored adsorber display foot 4

Separate display foot with a real enlarged hole. Invented static geometry and scale. No adsorbent grade, pore size, loading plan, packing density, water capacity, breakthrough curve, dewpoint, pressure drop, regeneration cycle, vessel rating or operating/maintenance procedure is specified.