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Microbial Oxidation of Mixtures of Methylmercaptan and Hydrogen Sulfide

机译:甲硫醇和硫化氢混合物的微生物氧化

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Refinery spent-sulfidic caustic, containing only inorganic sulfides, has previously been shown to be amenable to biotreatment with Thiobacillus denitrificans strain F with complete oxidation of sulfides to sulfate. However, many spent caustics contain mercaptans that cannot be metabolized by this strict autotroph. An aerobic enrichment culture was developed from mixed Thiobacilli and activated sludge that was capable of simultaneous oxidation of inorganic sulfide and mercaptans using hydrogen sulfide (H_2S) and methylmercaptan (MeSH) gas feeds used to simulate the inorganic and organic sulfur of a spent-sulfidic caustic. The enrichment culture was also capable of biotreatment of an actual mercaptan-containing, spent-sulfidic caustic but at lower rates than predicted by operation on MeSH and H_2S fed to the culture in the gas phase, indicating that the caustic contained other inhibitory components.
机译:炼油厂仅含无机硫化物的废硫化物苛性碱已被证明适合用反硝化硫杆菌(Thiobacillus denitrificans)F菌株进行生物处理,使硫化物完全氧化成硫酸盐。但是,许多废苛性碱都含有不能被这种严格的自养生物代谢的硫醇。利用硫杆菌和活性污泥开发了一种需氧富集培养物,该培养物能够使用硫化氢(H_2S)和甲基硫醇(MeSH)气体进料同时氧化无机硫化物和硫醇,用于模拟废硫化碱的无机和有机硫。 。浓缩培养物还能够对实际的含硫醇的废硫化碱进行生物处理,但速率低于通过气相向培养物中进料的MeSH和H_2S的操作所预测的速率,表明该苛性碱含有其他抑制性成分。

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