IP Library Granted Patent US 12686824
Granted Patent B2
US 12686824 · App. 18/034,264 · Granted Jul 21, 2026

Process and installation for the product processing of fischer-tropsch based raw products for the production of pre-formulated fuels or standard-compliant fuels

Inventors: Julian Baudner (Karlsruhe, DE); Manuel Selinsek (Karlsruhe, DE)
Assignee: INERATEC GMBH
C10G2/34C10G2/32C10G69/04C10K3/026C10G2400/02C10G2400/04C10G2400/08
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Quick Facts
Patent No.
US 12686824
App. No.
18/034,264
Granted
Jul 21, 2026
Kind
B2
Abstract

Processes and installations for the production of standard-compliant fuels, preferably gasoline (according to EN 228), diesel (according to EN 590 or EN 15940) and kerosene (according to ASTM D7566 or ASTM D1566), starting from CO 2 and H 2 by an integrated processing of Fischer-Tropsch raw products via different process steps with recycling of hydrogen or hydrogen-containing gases remaining after the processing into the RWGS before the Fischer-Tropsch synthesis.

Claims (92)

1 . An installation for the production of standard-compliant fuels, wherein the installation comprises

A) an optional unit for providing a CO 2 /H 2 mixture

B) a Fischer-Tropsch synthesis unit comprising or consisting of:

at least one RWGS (Reverse Water Gas Shift Reaction) stage configured for a reaction of CO 2 and H 2 to synthesis gas,

at least one Fischer-Tropsch stage configured for a reaction of CO and H 2 in a Fischer-Tropsch synthesis,

C0) optionally at least one discharge device for product streams originating from the Fischer-Tropsch synthesis,

C) a processing unit configured for receiving and processing Fischer-Tropsch products discharged from the Fischer-Tropsch synthesis unit, comprising or consisting of

at least one of the following three subunits:

i) an isomerization unit,

ii) a cracking unit

iii) a hydrogenation unit,

optionally at least one separation unit,

at least one feed line for hydrogen,

one or more discharge lines, each configured for a discharge of a fraction containing a standard-compliant fuel in each case,

optionally one discharge line for an aqueous phase, and

at least one discharge line for formed gases comprising hydrogen and C 1 - to C 4 -hydrocarbons,

the at least one discharge line for the formed gases being designed as a recycle line for the gases into the RWGS stage, and wherein

the installation does not have a purification device for the gases formed in the processing unit which are recycled to the RWGS stage.

2 . The installation of claim 1 , wherein the Fischer-Tropsch products discharged from the synthesis unit comprise a wax phase and an oil phase.

3 . The installation of claim 1 , wherein cracking unit ii) is a hydrocracking unit.

4 . The installation of claim 1 , wherein the installation is arranged on a single site.

5 . The installation of claim 1 , wherein the installation is arranged in a single housing.

6 . The installation of claim 1 , wherein the processing unit comprises at least two of the units i), ii) and iii).

7 . The installation of claim 1 , wherein the processing unit comprises all three of the units i), ii) and iii).

8 . The installation of claim 1 , wherein the installation is configured to produce at least one of kerosene, diesel or gasoline as a product.

9 . The installation of claim 1 , wherein the processing unit C) for the processing of wax phase and oil phase comprises or consists of the following installation parts, the respective installation parts being in operative connection with each other:

C-A) feed lines for

C-Aa) a wax phase,

C-Ab) an oil phase,

C-Ac) hydrogen;

C-B) a hydrocracking reactor unit, which may consist of one or more sub-units, configured for the reaction of wax phase with hydrogen;

C-C) one or more separation units configured for separation of product of unit C-B) into

C-Ca) a long chain waxy fraction C-3a),

C-Cc) a short-chain oily fraction C-3c), and

C-Cd) hydrogen or hydrogen-containing gases C-3d);

C-D) a mixing unit configured for mixing of oil phase with the short-chain oily fraction C-3c),

C-E) one or more separation units configured for separating a mixture obtained in mixing unit C-D) into

5a) a long-chain, waxy fraction,

5c) a short-chain, fraction which can be discharged as a product,

5d) a medium-chain fraction,

comprising

Ea) a return line for fraction C-5a) to the wax phase,

Ec) a discharge line for fraction C-5c)

Ed) a discharge line for fraction C-5d);

C-F) an isomerization and hydrogenation unit configured for reacting fraction C-5d) with addition of hydrogen,

C-G) one or more separation units configured for separating a mixture obtained in unit C-F) into

C-Ga) fuel and

C-Gb) hydrogen or hydrogen-containing gases,

the installation being configured to recycle hydrogen-containing gases formed in C-C) and C-G) into the RWGS stage of Fischer-Tropsch synthesis unit B).

10 . The installation of claim 1 , wherein a hydrogen feed line is arranged in Fischer-Tropsch synthesis unit B) between the RWGS stage and the Fischer-Tropsch stage.

11 . A process for the production of standard-compliant fuels, wherein the process comprises:

A) providing a CO 2 /H 2 mixture,

B) feeding the CO 2 /H 2 mixture into a Fischer-Tropsch synthesis unit,

reaction of CO 2 and H 2 to CO and H 2 in a RWGS reaction,

reaction of CO and H 2 in a Fischer-Tropsch synthesis,

C0) optionally discharging one or more product streams from the Fischer-Tropsch synthesis, and

C) receiving and processing Fischer-Tropsch products discharged from the Fischer-Tropsch synthesis which were not discharged in C0),

with the addition of hydrogen

by

at least one of the following reactions:

i) isomerization,

ii) cracking

iii) hydrogenation,

optionally separation,

discharging of at least one fraction containing a standard-compliant fuel,

optionally discharging of aqueous phase, and

discharging of gases formed in processing, comprising hydrogen and C 1 - to C 4 -hydrocarbons,

the discharging of gases formed in processing being carried out as recycle into the RWGS reaction, and

the gases formed in the processing unit being recycled to the RWGS reaction without purification.

12 . The process of claim 11 , wherein processing of wax and oil phase discharged from the Fischer-Tropsch synthesis as Fischer-Tropsch products in C) comprises or consists of:

Ia) providing the wax phase, optionally in a feed vessel,

II) introducing the wax phase together with hydrogen into a hydrocracking reactor and converting the wax phase into shorter chain hydrocarbons,

III) separating product obtained in II) into

3a) a long-chain waxy fraction, which is recycled to Ia),

3c) a short-chain oily fraction,

3d) hydrogen or hydrogen-containing gases,

IV) providing an oil phase, optionally in a feed vessel, and mixing the oil phase with the short-chain oily fraction from 3c), optionally with simultaneous, at least partial, degassing,

V) separating a mixture obtained in IV) into

5a) a long-chain, waxy fraction, which is recycled to Ia),

5c) a short-chain fraction which can be discharged as a product,

5d) a medium chain fraction,

VI) reaction of fraction 5d) with addition of hydrogen in an isomerization and hydrogenation unit,

VII) separation of product from VI) into

7a) fuel

7b) hydrogen or hydrogen-containing gases,

the hydrogen-containing gases formed in III) and VII) being recycled.

13 . The process of claim 11 , wherein all process steps are carried out on a single site.

14 . The process of claim 11 , wherein all process steps are carried out in a single housing.

15 . The process of claim 11 , wherein C) comprises at least two of reactions i), ii) and iii).

16 . The process of claim 11 , wherein C) comprises all three reactions i), ii) and iii).

17 . The process of claim 11 , wherein the process is carried out such that at least one of kerosene, diesel or gasoline is obtained as a product.

18 . The process of claim 11 , wherein in B) a hydrogen feed is performed between a reaction of CO 2 and H 2 to CO and H 2 , in a RWGS reaction, and a reaction of CO and H 2 in a Fischer-Tropsch synthesis.