IP Library Granted Patent US 12691411
Granted Patent B2
US 12691411 · App. 18/121,347 · Granted Jul 28, 2026

Plant and method for carrying out an endothermic chemical process and for separating carbon dioxide from flue gas produced in the process

Inventors: Jean-Philippe Tadiello (Frankfurt am Main, DE); Teja Schmid McGuinness (Frankfurt am Main, DE); Alexander Haenel (Frankfurt am Main, DE)
Assignee: L'Air Liquide, Societe Anonyme Pour l'Etude et l'Exploitation des Procedes
B01D53/75B01D53/1406B01D53/1425B01D53/1475B01D53/1481B01D53/18B01D53/343B01D53/346B01D53/62B01D53/78B01D53/96F23J15/006B01D2257/302B01D2257/404B01D2257/504B01D2258/0283F23J15/02F23J2215/50
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Quick Facts
Patent No.
US 12691411
App. No.
18/121,347
Granted
Jul 28, 2026
Kind
B2
Abstract

The plant according to the invention includes a reactor including a combustion chamber in which a fuel is fired with an oxidant to form a carbon dioxide-containing flue gas stream. The plant also includes a waste heat recovery unit in fluid connection with the combustion chamber, configured to capture heat from the flue gas stream. The plant also includes a flue gas compression unit in fluid connection with the waste heat recovery unit, configured to increase the pressure of the flue gas stream. The plant also includes a scrubber in fluid connection with the flue gas compression unit, configured to remove sulphur oxides and/or nitrogen oxides from the flue gas stream and to cool flue gas stream by means of the scrubbing medium. The plant also includes an absorption unit in fluid connection with the scrubber, configured to absorb carbon dioxide from the flue gas stream.

Claims (27)

1 . A method for carrying out an endothermic chemical process and for separating carbon dioxide from flue gas produced in the process, comprising the method steps of

carrying out an endothermic reaction in a reaction chamber, and firing the endothermic reaction by means of burning a hydrocarbon-containing fuel in a combustion chamber with the aid of an oxidant, whereby a carbon dioxide-containing flue gas stream is formed in the combustion chamber;

capturing heat from the carbon dioxide-containing flue gas stream withdrawn from the combustion chamber by means of a waste heat recovery unit;

compressing the carbon dioxide-containing flue gas stream withdrawn from the waste heat recovery unit by means of a flue gas compression unit;

at least partially removing sulphur oxides and/or nitrogen oxides from the carbon dioxide-containing flue gas stream withdrawn from the flue gas compression unit by means of a scrubbing medium in a scrubber, and cooling of the carbon dioxide-containing flue gas stream withdrawn from the flue gas compression unit by means of the scrubbing medium in the scrubber;

absorbing carbon dioxide of the carbon dioxide containing flue gas stream withdrawn from the scrubber by means of a chemically acting absorption medium in an absorption unit, wherein a carbon dioxide laden absorption medium is obtained, and withdrawing carbon dioxide depleted flue gas from the absorption unit, and subsequently releasing carbon dioxide from the carbon dioxide laden absorption medium by means of a desorption unit arranged downstream of the absorption unit,

further wherein the carbon dioxide-containing flue gas withdrawn from the flue gas compression unit is admitted to a vertically arranged flue gas exhaust pipe, wherein the flue gas exhaust pipe is arranged downstream of the flue gas compression unit and upstream of the scrubber, and wherein the flue gas exhaust pipe comprises an upper open end, and wherein the carbon-containing flue gas is admitted to the flue gas exhaust pipe by means of an inlet located in a lower region of the flue gas exhaust pipe, and wherein the carbon dioxide containing flue gas is withdrawn from the flue gas exhaust pipe by means of an outlet located in the lower region of the flue gas exhaust pipe.

2 . The method according to claim 1 , wherein the carbon dioxide-containing flue gas stream withdrawn from the flue gas compression unit is further cooled by means of a heat exchange device, and wherein the heat exchange device is arranged upstream of the scrubber.

3 . The method according to claim 1 , wherein the carbon dioxide-containing flue gas stream withdrawn from the scrubber is not compressed before it is admitted to the absorption unit.

4 . The method according to claim 1 , wherein the flue gas compression unit creates a negative pressure in the combustion chamber.

5 . A method for carrying out an endothermic chemical process and for separating carbon dioxide from flue gas produced in the process, comprising the method steps of

carrying out an endothermic reaction in a reaction chamber, and firing the endothermic reaction by means of burning a hydrocarbon-containing fuel in a combustion chamber with the aid of an oxidant, whereby a carbon dioxide-containing flue gas stream is formed in the combustion chamber:

capturing heat from the carbon dioxide-containing flue gas stream withdrawn from the combustion chamber by means of a waste heat recovery unit;

compressing the carbon dioxide-containing flue gas stream withdrawn from the waste heat recovery unit by means of a flue gas compression unit;

at least partially removing sulphur oxides and/or nitrogen oxides from the carbon dioxide-containing flue gas stream withdrawn from the flue gas compression unit by means of a scrubbing medium in a scrubber, and cooling of the carbon dioxide-containing flue gas stream withdrawn from the flue gas compression unit by means of the scrubbing medium in the scrubber;

absorbing carbon dioxide of the carbon dioxide containing flue gas stream withdrawn from the scrubber by means of a chemically acting absorption medium in an absorption unit, wherein a carbon dioxide laden absorption medium is obtained, and withdrawing carbon dioxide depleted flue gas from the absorption unit, and subsequently releasing carbon dioxide from the carbon dioxide laden absorption medium by means of a desorption unit arranged downstream of the absorption unit, further wherein the carbon dioxide-containing flue gas stream withdrawn from the flue gas compression unit

is admitted to a vertically arranged flue gas exhaust pipe, wherein the flue gas exhaust pipe is arranged downstream of the flue gas compression unit, and wherein the flue gas exhaust pipe comprises an upper open end, and wherein the carbon-containing flue gas is admitted to the flue gas exhaust pipe by means of an inlet located in a lower region of the flue gas exhaust pipe, and/or

is admitted to the scrubber by means of an inlet of the scrubber,

wherein the flue gas exhaust pipe and the scrubber are arranged parallel to each other, so that

the complete stream of the carbon dioxide-containing flue gas withdrawn from the flue gas compression unit is admitted to the flue gas exhaust pipe or the scrubber, or

a partial stream of the carbon dioxide-containing flue gas withdrawn from the flue gas compression unit is admitted to the flue gas exhaust pipe and a partial stream of the carbon dioxide-containing flue gas withdrawn from the flue gas compression unit is admitted to the scrubber.

6 . The method according to claim 5 , wherein the volume flow of the carbon dioxide-containing flue gas stream withdrawn from the flue gas compression unit and admitted to the flue gas exhaust pipe and/or the scrubber is controlled by means of at least one control device, wherein the at least one control device

is arranged downstream of the flue gas compression unit and upstream of the flue gas exhaust pipe and/or

is arranged downstream of the flue gas compression unit and upstream of the scrubber.

7 . The method according to claim 5 , wherein the carbon dioxide-containing flue gas stream withdrawn from the flue gas compression unit is further cooled by means of a heat exchange device, and wherein the heat exchange device is arranged upstream of the scrubber.

8 . The method according to claim 5 , wherein the carbon dioxide-containing flue gas stream withdrawn from the scrubber is not compressed before it is admitted to the absorption unit.

9 . The method according to claim 5 , wherein the flue gas compression unit creates a negative pressure in the combustion chamber.