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Prospective Approach to the Anaerobic Bioconversion of Benzo- and Dibenzothiophene Sulfones to Sulfide

机译:苯并和二苯并噻吩砜厌氧生物转化为硫化物的前瞻性方法。

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摘要

Sulfur recovery from organic molecules such as toxic sulfones is an actual problem, and its solution through the use of environmentally friendly and nature-like processes looks attractive for research and application. For the first time, the possible bioconversion of organic sulfones (benzo-and dibenzothiophene sulfones) to inorganic sulfide under anaerobic conditions with simultaneous biogas production from glucose within a methanogenesis process is demonstrated. Biogas with a methane content of 50.7%–82.1% was obtained without H2S impurities. Methanogenesis with 99.7%–100% efficiency and 97.8%–100% conversion of benzo- and dibenzothiophene sulfones (up to 0.45 mM) to inorganic sulfide were obtained in eight days by using a combination of various anaerobic biocatalysts immobilized in a poly(vinyl alcohol) cryogel. Pure cell cultures of sulfate-reducing bacteria and/or H2-producing bacteria were tested as additives to the methanogenic activated sludge. The immobilized activated sludge “enhanced” by bacterial additives appeared to retain its properties and be usable multiple times for the conversion of sulfones under batch conditions.
机译:从有机分子(例如有毒的砜)中回收硫是一个实际问题,其通过使用环保和类似自然的方法解决问题对于研究和应用而言似乎很有吸引力。首次证明了在厌氧条件下,有机甲烷砜(苯并噻吩和二苯并噻吩砜)可能在生物转化过程中由葡萄糖同时产生沼气,从而生物转化为无机硫化物。获得的沼气中无H2S杂质的甲烷含量为50.7%–82.1%。通过固定在聚乙烯醇中的多种厌氧生物催化剂的组合,在八天内获得了99.9%–100%的甲烷生成效率和97.8%–100%的苯并二苯并二苯并噻吩砜(高达0.45 mM)转化为无机硫化物。 )冷冻凝胶。测试了还原硫酸盐的细菌和/或产生H2的细菌的纯细胞培养物作为产甲烷活性污泥的添加剂。被细菌添加剂“增强”的固定化活性污泥似乎保留了其特性,并在批次条件下可多次用于砜的转化。

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