IP Library › Granted Patent US 10,661,224
Granted Patent B2
US 10,661,224 · App. 16/092,609 · Granted May 26, 2020

Process for the purifying of a raw gas stream containing mainly C1-C5 hydrocarbons and carbon dioxide, and impurities of organic and inorganic sulfur compounds, halogenated and non-halogenated volatile organic compounds and oxygen

Inventors: Kresten Egeblad (Farum, DK); Niklas Bengt Jakobsson (Kågeröd, SE); Jacob Hjerrild Zeuthen (Birkerød, DK); Rasmus Trane-Restrup (Roskilde, DK)
Assignee: Haldor Topsoe A/S
B01D53/8603B01D53/047B01D53/0462B01D53/343B01D53/50B01D53/501B01D53/68B01D53/78B01D53/869B01D53/8662B01D53/8668B01D53/8671C10L3/101C10L3/103C10L3/104C12M47/18B01D2251/202B01D2251/21B01D2251/304B01D2251/404B01D2251/604B01D2251/606B01D2257/104B01D2257/204B01D2257/206B01D2257/30B01D2257/302B01D2257/306B01D2257/504B01D2257/553B01D2257/556B01D2257/708B01D2258/05C10L2200/0469C10L2230/02C10L2290/06C10L2290/26C10L2290/541C10L2290/542C10L2290/545
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Quick Facts
Patent No.
US 10,661,224
App. No.
16/092,609
Granted
May 26, 2020
Kind
B2
Abstract

A method for the purification of a raw gas stream by selective catalytic oxidation, in which organic and inorganic sulfur compounds, halogenated and non-halogenated volatile organic compounds are selectively oxidized without substantially oxidizing the lower hydrocarbons and the sulfur containing compounds present in the gas to sulfur trioxide and excess of oxygen is removed by oxidation of lower alcohols, ethers or hydrogen added to the raw gas stream upstream the catalytic oxidation.

Claims (23)

1. A process for purifying of a raw gas containing C1-C5 hydrocarbons and carbon dioxide, and impurities of organic and inorganic sulfur compounds, halogenated and non-halogenated volatile organic compounds, oxygen, nitrogen and water, without oxidizing the C1-C5 hydrocarbons and without oxidizing the organic and inorganic sulfur compounds to sulfur trioxide, the process comprises the steps of

contacting the raw gas at a temperature of between 200 and 450° C. in one or more oxidation steps with a selective oxidation catalyst and oxidizing selectively in part or in full the organic and inorganic sulfur compounds and the halogenated and non-halogenated volatile organic compounds to carbon dioxide, water, sulfur dioxide and hydrogen halides; and

removing at least part of excess of oxygen contained in the raw gas in the one or more oxidation steps by adding lower alcohols, lower ethers, or combinations thereof to the raw gas upstream to at least one of the one or more oxidation steps and oxidizing the lower alcohols, lower ethers or combinations thereof to carbon dioxide and water with the at least part of the excess of oxygen;

withdrawing and cooling a hot exit gas from the one or more oxidation steps comprising the C1-C5 hydrocarbons, sulfur dioxide, carbon dioxide, water, and hydrogen halides, with at least part of the excess of oxygen removed from the exit gas; and

introducing the cooled exit gas into a purification step and removing the sulfur dioxide and the hydrogen halides, from the cooled exit gas; and

collecting a purified exit gas comprising the C1-C5 hydrocarbons, carbon dioxide and water.

2. Process according to claim 1 , wherein the one or more oxidation steps comprise a second oxidation step arranged subsequently to a first oxidation step for the removal of remaining excess of oxygen contained in the raw gas from the first oxidation step by adding lower alcohols, lower ethers, or combinations thereof to the raw gas withdrawn from the first oxidation step and oxidizing the lower alcohols or lower ethers or combinations thereof to carbon dioxide and water and the hot exit gas is withdrawn from the second oxidation step.

3. Process according to claim 2 , wherein the raw gas from the first oxidation step is cooled prior to the second oxidation step.

4. Process according to claim 3 , wherein the raw gas is cooled by heat exchange with the raw gas being passed to the first oxidation step.

5. Process according to claim 1 , wherein the one or more oxidation steps are performed in parallel.

6. Process according to claim 1 , wherein the selective oxidation catalyst in the one or more oxidation steps comprises oxides of vanadium, tungsten, and titanium, with metallic or oxidic palladium.

7. Process according to claim 1 , comprising an additional step of removing siloxanes and silanols contained in the raw gas stream by passing the raw gas stream through a siloxane and silanol sorbent, prior to the one or more oxidation steps.

8. Process according to claim 7 , wherein the additional step of removing siloxanes and silanols contained in the raw gas stream is carried out by heating the raw gas stream prior to passage through the siloxane and silanol sorbent.

9. Process according to claim 1 , wherein the sulfur dioxide and hydrogen halides are removed from the cooled exit gas by scrubbing the cooled exit gas using a caustic scrubbing agent.

10. Process according to claim 9 , wherein the caustic scrubbing agent comprises an aqueous solution of NaOH, Ca(OH) 2 or CaCO 3 .

11. Process according to claim 1 , wherein sulfur dioxide and hydrogen halides are removed by scrubbing the cooled exit gas in a scrubber using hydrogen peroxide to produce sulfuric acid.

12. Process according to claim 1 , wherein carbon dioxide contained in the purified raw gas stream is removed by pressure or temperature swing absorption or chemical or physical carbon dioxide absorption.

13. Process according to claim 1 , wherein the selective oxidation catalyst is supported on a monolithic substrate.

14. Process according to claim 1 , wherein the halogenated volatile organic compounds comprise halogenated aliphatic and/or aromatic organic compounds.

15. Process according to claim 1 , wherein the raw gas stream contains fully substituted chloro-fluoro compounds and tetra-chloro ethylene.

16. Process according to claim 1 , wherein the non-halogenated volatile organic compounds comprise acyclic and/or cyclic alkanes, alkenes and/or alkynes, non-alkylated, alkylated or alkenylated aromatic compounds, and/or oxygenated compounds.

17. Process according to claim 1 , wherein the raw gas stream is a biogas stream from landfills or anaerobic digesters.

18. Process according to claim 14 , wherein the halogenated volatile organic compounds comprise mono-, di-, or tri-chloro ethane, mono- or di-chloro benzene, vinyl chloride, or dioxins.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 5, 2018
From: JAKOBSSON, NIKLAS BENGT; EGEBLAD, KRESTEN; ZEUTHEN, JACOB HJERRILD; TRANE-RESTRUP, RASMUS
To: HALDOR TOPSOE A/S
Reel/Frame 047675/0944 →
Priority Claims (3)
DK 2016 00309 · May 24, 2016 · national
DK 2016 00634 · Oct 17, 2016 · national
DK 2017 00029 · Jan 12, 2017 · national
Continuity (1)
Related Publication 20190126199A1 · May 2, 2019