Effect of dimethyl disulfide on the sulfur formation and microbial community composition during the biological H2S removal from sour gas streams

被引:34
|
作者
Kiragosyan, Karine [1 ,2 ]
Picard, Magali [1 ,3 ]
Sorokin, Dimitry Y. [1 ,4 ,5 ]
Dijkstra, Jelmer [1 ]
Klok, Johannes B. M. [1 ,2 ,6 ]
Roman, Pawel [1 ]
Janssen, Albert J. H. [2 ,7 ]
机构
[1] Wetsus, European Ctr Excellence Sustainable Water Technol, Oostergoweg 9, NL-8911 MA Leeuwarden, Netherlands
[2] Wageningen Univ, Environm Technol, POB 17, NL-6700 AA Wageningen, Netherlands
[3] Eurofins Agrosci Serv Chem SAS, 75 Chemin Sommieres, F-30310 Vergeze, France
[4] Russian Acad Sci, Winogradsky Inst Microbiol, Res Ctr Biotechnol, Prospect 60 Let Oktyabrya 7-2, Moscow, Russia
[5] Delft Univ Technol, Dept Biotechnol, Maasweg 9, NL-2629 HZ Delft, Netherlands
[6] Paqell BV, Reactorweg 301, NL-3542 AD Utrecht, Netherlands
[7] Shell, Oostduinlaan 2, NL-2596 JM The Hague, Netherlands
基金
欧盟地平线“2020”;
关键词
Selective inhibition; Dimethyl disulfide; Biodesulfurization; Sulfur-oxidizing bacteria; Biosulfur; OXIDIZING BACTERIA; SULFIDE OXIDATION; THIOALKALIVIBRIO-VERSUTUS; HALOALKALINE CONDITIONS; HYDROGEN-SULFIDE; LAB-SCALE; SP NOV; GAMMAPROTEOBACTERIUM; POLYSULFIDES; METHANETHIOL;
D O I
10.1016/j.jhazmat.2019.121916
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Removal of organic and inorganic sulfur compounds from sour gases is required because of their toxicity and atmospheric pollution. The most common are hydrogen sulfide (H2S) and methanethiol (MT). Under oxygen-limiting conditions about 92 mol% of sulfide is oxidized to sulfur by haloalkaliphilic sulfur-oxidizing bacteria (SOB), whilst the remainder is oxidized either biologically to sulfate or chemically to thiosulfate. MT is spontaneously oxidized to dimethyl disulfide (DMDS), which was found to inhibit the oxidation of sulfide to sulfate. Hence, we assessed the effect of DMDS on product formation in a lab-scale biodesulfurization setup. DMDS was quantified using a newly, in-house developed analytical method. Subsequently, a chemical reaction mechanism was proposed for the formation of methanethiol and dimethyl trisulfide from the reaction between sulfide and DMDS. Addition of DMDS resulted in significant inhibition of sulfate formation, leading to 96 mol% of sulfur formation. In addition, a reduction in the dominating haloalkaliphilic SOB species, Thioalkalivibrio sulfidiphilus, was observed in favor of Thioalkaibacter halophilus as a more DMDS-tolerant with the 50 % inhibition coefficient at 2.37 mM DMDS.
引用
收藏
页数:11
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