IP Library › Granted Patent US 10,865,107
Granted Patent B2
US 10,865,107 · App. 16/334,220 · Granted Dec 15, 2020

Novel, highly efficient, eco-friendly processes for converting CO

Inventors: Mordechay Herskowitz (Beer-Sheva, IL); Tomy Hos (Rishon Lezion, IL)
Assignee: B.G. NEGEV TECHNOLOGIES & APPLICATIONS LTD., AT BEN-GURION UNIVERSITY
C01B3/12B01J21/04B01J21/063B01J23/52B01J23/745B01J23/755B01J35/1014B01J35/1019B01J35/1038B01J35/1061B01J37/0009B01J37/0036B01J37/0201B01J37/031C01B3/38C01B3/501C10G2/32C10G2/33C10G3/00C10G50/00C10K3/026C25B1/00C25B15/08C01B2203/0238C01B2203/0405C01B2203/065C01B2203/1241Y02P30/20
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Quick Facts
Patent No.
US 10,865,107
App. No.
16/334,220
Granted
Dec 15, 2020
Kind
B2
Abstract

The invention provides a process for preparing liquid fuels and chemicals, which process comprises feeding carbon monoxide and hydrogen to a hydrogenation reactor, wherein the molar ratio CO:H 2 is in the range of 1:0.5 to 1:0.9, catalytically hydrogenating said carbon monoxide in said hydrogenation reactor, condensing the effluent of said hydrogenation reactor to recover one or more organic liquid(s) and an aqueous solution, feeding a non-condensable component of said effluent into an oligomerization reactor; condensing an effluent discharged from the oligomerization reactor to obtain an additional organic liquid and an additional gaseous stream, separating said additional organic liquid, and either combusting said additional gaseous stream to produce heat and electricity, or processing same to obtain recyclable gaseous streams utilizable in said process.

Claims (4)

1. A process for preparing liquid fuels and chemicals, which process comprises feeding carbon monoxide and hydrogen to a hydrogenation reactor, wherein the molar ratio CO:H 2 is in the range of 1:0.5 to 1:0.9, catalytically hydrogenating said carbon monoxide in said hydrogenation reactor to produce a hydrogenation effluent, condensing the effluent of said hydrogenation reactor to recover one or more organic liquid(s) and an aqueous solution, feeding a non-condensable component of said effluent into an oligomerization reactor; condensing an effluent discharged from the oligomerization reactor to obtain an additional organic liquid and an additional gaseous stream, separating said additional organic liquid, and either combusting said additional gaseous stream to produce heat and electricity, or processing said additional gaseous stream to obtain recyclable gaseous streams utilizable in said process, wherein the carbon monoxide and hydrogen feedstock is supplied by dry reforming carbon dioxide with natural gas or co-electrolysis of carbon dioxide and steam, wherein the process further comprises splitting the additional gaseous component generated in the oligomerization reaction into a carbon monoxide stream and carbon monoxide-depleted, carbon dioxide-rich stream, recycling said carbon monoxide stream to the hydrogenation reactor; dividing said carbon monoxide-depleted, carbon dioxide-rich stream into two subsidiary streams, wherein one subsidiary CO 2 -containing stream is used to supply CO 2 to said dry reforming reaction or said co-electrolysis, and the other CO 2 -containing stream is reacted with hydrogen in reverse water gas shift reactor to produce CO and water, following which the effluent of said RWGS reactor is separated into water and CO-containing stream which is used to supply CO to the hydrogenation reaction.

2. A process for preparing liquid fuels and chemicals, which process comprises feeding carbon monoxide and hydrogen to a hydrogenation reactor, wherein the molar ratio CO:H 2 is in the range of 1:0.5 to 1:0.9, catalytically hydrogenating said carbon monoxide in said hydrogenation reactor to produce a hydrogenation effluent, condensing the effluent of said hydrogenation reactor to recover one or more organic liquid(s) and an aqueous solution, feeding a non-condensable component of said effluent into an oligomerization reactor; condensing an effluent discharged from the oligomerization reactor to obtain an additional organic liquid and an additional gaseous stream, separating said additional organic liquid, and either combusting said additional gaseous stream to produce heat and electricity, or processing said additional gaseous stream to obtain recyclable gaseous streams utilizable in said process, comprising producing a mixture of carbon monoxide and hydrogen either by means of dry reforming carbon dioxide or co-electrolysis of carbon dioxide and steam, separating hydrogen in part from said mixture, to form syngas feedstock, feeding said syngas—wherein the molar ratio CO:H 2 is in the range of 1:0.5 to 1:0.9 to a hydrogenation reactor, catalytically hydrogenating said carbon monoxide in said hydrogenation reactor to produce a hydrogenation effluent, condensing the effluent of said hydrogenation reactor at a first temperature to obtain a first organic liquid and a first gaseous stream, separating said first organic liquid and collecting same; condensing said first gaseous stream at a second temperature to obtain a second liquid, which consists of an organic phase and an aqueous phase, and a second gaseous stream; separating said second liquid into a second organic liquid and an aqueous phase; feeding said second gaseous stream into the oligomerization reactor; condensing the effluent discharged from the oligomerization reactor to obtain a third organic liquid and a third gaseous stream, separating and collecting third organic liquid, splitting said third gaseous component into a carbon monoxide stream and carbon monoxide-depleted, carbon dioxide-rich stream, recycling said carbon monoxide stream to said hydrogenation reactor; dividing said carbon monoxide-depleted, carbon dioxide-rich stream into two subsidiary streams, wherein one subsidiary CO 2 -containing stream is used to supply CO 2 to said dry reforming reaction or said co-electrolysis, and the other CO 2 -containing stream is reacted with hydrogen in reverse water gas shift (RWGS) reactor to produce CO and water, following which the effluent of said RWGS reactor is separated into water and CO-containing stream which is used to supply CO to said hydrogenation reaction, hydrotreating one or more organic products collected in the process to form premium liquid fuels, and converting oxygenates in the aqueous solution into olefins which are fed to the oligomerization reactor.

3. A process for preparing liquid fuels and chemicals, which process comprises feeding carbon monoxide and hydrogen to a hydrogenation reactor, wherein the molar ratio CO:H 2 is in the range of 1:0.5 to 1:0.9, catalytically hydrogenating said carbon monoxide in said hydrogenation reactor to produce a hydrogenation effluent, condensing the effluent of said hydrogenation reactor to recover one or more organic liquid(s) and an aqueous solution, feeding a non-condensable component of said effluent into an oligomerization reactor; condensing an effluent discharged from the oligomerization reactor to obtain an additional organic liquid and an additional gaseous stream, separating said additional organic liquid, and either combusting said additional gaseous stream to produce heat and electricity, or processing said additional gaseous stream to obtain recyclable gaseous streams utilizable in said process, wherein the carbon monoxide and hydrogen feedstock is supplied from waste gases characterized by having H 2 /CO molar ratio of <0.5, the process comprises subjecting said waste gas to water gas shift (WGS) reaction to convert part of the CO so that the H 2 /CO molar ratio increases, and separating excess hydrogen in a membrane so that the H 2 /CO molar ratio of the stream fed to CO hydrogenation reactor is adjusted to about 0.6-0.8, and hydrogenating the product of said WGS reaction.

4. A process for preparing liquid fuels and chemicals, which process comprises feeding carbon monoxide and hydrogen to a hydrogenation reactor, wherein the molar ratio CO:H 2 is in the range of 1:0.5 to 1:0.9, catalytically hydrogenating said carbon monoxide in said hydrogenation reactor, to produce a hydrogenation effluent, condensing the effluent of said hydrogenation reactor to recover one or more organic liquid(s) and an aqueous solution, feeding a non-condensable component of said effluent into an oligomerization reactor; condensing an effluent discharged from the oligomerization reactor to obtain an additional organic liquid and an additional gaseous stream, separating said additional organic liquid, and either combusting said additional gaseous stream to produce heat and electricity, or processing said additional gaseous stream to obtain recyclable gaseous streams utilizable in said process, wherein the carbon monoxide and hydrogen feedstock is supplied from waste gases characterized by having H 2 /CO molar ratio of >0.9, the process comprises subjecting said waste gas to RWGS reaction, condensing the product of the RWGS reaction to obtain water and non-condensable component, separating water from the gaseous component and separating hydrogen therefrom, and directing the gaseous stream to the hydrogenation reaction.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 16, 2019
From: HERSKOWITZ, MORDECHAY; HOS, TOMY
To: B.G. NEGEV TECHNOLOGIES & APPLICATIONS LTD., AT BEN-GURION UNIVERSITY
Reel/Frame 049171/0472 →
Continuity (3)
Provisional Application 62396234 · Sep 19, 2016
Provisional Application 62470903 · Mar 14, 2017
Related Publication 20190225489A1 · Jul 25, 2019