IP Library Granted Patent US 9,180,426
Granted Patent B2
US 9,180,426 · App. 11/446,371 · Granted Nov 10, 2015

Scrubber for methanol production system

Inventors: Nathan A Pawlak (Marquette, MI); Robert W Carr (Bloomington, MN)
Assignee: Gas Technologies, LLC
B01J19/2415B01D3/14B01D53/1487B01D53/18B01J4/002B01J19/006B01J19/26C07C29/50B01D2257/504B01D2257/704B01J2219/00006B01J2219/00123B01J2219/00159B01J2219/00777B01J2219/182B01J2219/1943
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Quick Facts
Patent No.
US 9,180,426
App. No.
11/446,371
Granted
Nov 10, 2015
Kind
B2
Abstract

An apparatus and method of producing methanol is provided that reacts a methane-containing gas and an oxygen-containing gas in a reactor to provide a product stream comprising methanol and formaldehyde. The product stream is scrubbed using a process component absorbent. After scrubbing the product stream, unprocessed methane gas is mixed with the methane-containing gas for reprocessing through the reactor while methanol and formaldehyde is sent to a rectification process for removal.

Claims (30)

1. A method for recycling unreacted methane gas from a reaction product gas stream of a homogenous direct partial oxidation methane reactor, the method comprising:

mixing a non-oxidizing coolant with a mixture of methane-containing gas and oxygen-containing gas to inhibit decomposition of formaldehyde while forming the reaction product gas stream, the non-oxidizing coolant including an unheated hydrocarbon or methane-containing gas stream;

feeding the reaction product gas stream into a scrubber;

passing a pre-cooled absorbent through the scrubber;

cooling the reaction product gas stream via direct contact with the pre-cooled absorbent through the scrubber;

removing unreacted methane gas from the reaction product gas stream using the pre- cooled absorbent;

recycling the unreacted methane gas for use in the homogenous direct partial oxidation methane reactor; and

recycling the pre-cooled absorbent for reuse in the scrubber, wherein the pre-cooled absorbent comprises process components of the reaction product gas stream, the scrubber having a lower portion and an upper portion, the temperature of the lower portion being higher than the temperature of the upper portion, the scrubber being further configured such that all liquids flow downward.

2. A method according to claim 1 , wherein the scrubber operates at a pressure of at least about 4MPa and at a temperature of less than about 0° C.

3. A method according to claim 1 , wherein the reaction product gas stream comprises a mixture of methanol, formaldehyde, and carbon dioxide, and the pre-cooled absorbent comprises a mixture of methanol and water.

4. A method according to claim 3 , further comprising maintaining a steady state balance of methanol between the scrubber and the homogenous direct partial oxidation methane reactor by adding recycled methanol to the scrubber.

5. A method according to claim 3 , further comprising condensing methanol and water from the reaction product gas stream and separating a fraction of methanol and water as an absorbant.

6. A method according to claim 3 , further comprising substantially removing all of the methanol and formaldehyde entering the scrubber at steady state via a side removal stream.

7. A method according to claim 3 , further comprising cooling the spent absorbent prior to its reintroduction in the scrubber.

8. A method for producing methanol using a homogenous direct partial oxidation reactor, the method comprising:

feeding the reactor with a methane-containing gas and an oxygen-containing gas;

carrying out partial oxidation reaction of methane to form a product gas comprising a mixture of methanol and formaldehyde;

mixing a non-oxidizing coolant with the methane-containing gas and oxygen-containing gas to inhibit decomposition of formaldehyde, the non-oxidizing coolant including a hydrocarbon or methane-containing gas stream;

directing a pre-cooled absorbent to a scrubber;

directing the product gas to said scrubber;

cooling the product gases via direct contact with pre-cooled absorbent within the scrubber;

scrubbing the product gas with said pre-cooled absorbent comprising process components of the product gas in a scrubber, the scrubber having a lower portion and an upper portion, the temperature of the lower portion being higher than the temperature of the upper portion, the scrubber being further configured such that all liquids flow downward;

removing methanol, water, carbon dioxide, and formaldehyde from the product gas to form a spent solvent;

recycling unreacted methane-containing gas from the product gas into the homogenous direct partial oxidation methane reactor; and

recycling spent solvent for reintroduction into the scrubber as the pre-cooled absorbent.

9. A method according to claim 8 , wherein the pre-cooled absorbent comprises methanol and water.

10. A method according to claim 9 , wherein recycling the spent solvent comprises substantially removing all of the methanol, water, carbon dioxide, and formaldehyde entering the scrubber at steady state via a side removal stream.

11. A method according to claim 9 , wherein recycling the spent solvent comprises cooling the solvent prior to its reintroduction in the scrubber as an absorbent.

12. A method according to claim 9 , further comprising cooling the product gas prior to directing the product gas to the scrubber.

13. A method according to claim 9 , wherein the product gas is scrubbed at a pressure of at least about 4 MPa and at a temperature of less than about 0° C.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2025
From: GAS TECHNOLOGIES LLC
To: GASTECHNO CORP.
Reel/Frame 071374/0823 →
SECURITY AGREEMENT Recorded Apr 12, 2012
From: GAS TECHNOLOGIES LLC
To: PAWLAK, NATHAN; PAWLAK, PAUL; PAWLAK, BETH
Reel/Frame 028034/0741 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2006
From: PAWLAK, NATHAN A.; CARR, ROBERT W.
To: GAS TECHNOLOGIES LLC
Reel/Frame 017944/0813 →
Continuity (3)
Continuation In Part 11319093 · Dec 27, 2005
Continuation In Part 10901717 · Jul 29, 2004
Related Publication 20060223892A1 · Oct 5, 2006