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首页> 外文期刊>Biodegradation >Selectivity among organic sulfur compounds in one- and two-liquid-phase cultures of Rhodococcus sp. strain JVH1.
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Selectivity among organic sulfur compounds in one- and two-liquid-phase cultures of Rhodococcus sp. strain JVH1.

机译:红和红球菌一液相和二液相培养中有机硫化合物的选择性。菌株JVH1。

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摘要

The selectivity of Rhodococcus sp. strain JVH1 among selected sulfidic and thiophenic compounds was investigated in both single-liquid-phase (aqueous) cultures and in two-liquid-phase cultures, where the sulfur compounds were dissolved in 2,2,4,4,6,8,8-heptamethylnonane as the immiscible organic carrier phase. In the single-liquid-phase cultures, Rhodococcus sp. strain JVH1 showed a preference for benzyl sulfide over both 1,4-dithiane and benzothiophene. An increased lag was observed in the degradation of benzyl sulfone and benzothiophene sulfone when both compounds were present. These results were consistent with a competitive inhibition mechanism, affecting both sulfur oxidation and carbon-sulfur bond cleavage. In the two-liquid-phase cultures, the effect of partitioning between the two liquid phases dominated the desulfurization activity of the culture. This partitioning resulted in an apparent absence of selectivity, as well as decreases in lag time, extent of degradation, and time to completion ofdegradation. Desulfurization activity also depended on the growth phase of the cultures. Mass transfer rate limitations were not observed at the low degradation rates of 0.02 mmol day(-1) l(-1). Owing to the importance of partitioning, Rhodococcus sp. strain JVH1 is predicted to show nonselective activity towards the sulfur species in a whole crude oil.
机译:红球菌的选择性。在单液相(水)培养和两液相培养中研究了选定的硫化和噻吩化合物中的JVH1菌株,其中硫化合物溶解在2、2、4、4、6、8、8中-庚甲基壬烷作为不混溶的有机载体相。在单液相培养中,红球菌属。菌株JVH1显示出比1,4-二噻吩和苯并噻吩都优先选择苄基硫醚。当存在两种化合物时,在苄基砜和苯并噻吩砜的降解中观察到增加的滞后。这些结果与竞争性抑制机制一致,既影响了硫的氧化又影响了碳硫键的裂解。在两液相培养物中,两个液相之间的分配作用主导了培养物的脱硫活性。这种分配导致明显缺乏选择性,以及滞后时间,降解程度和降解完成时间的减少。脱硫活性还取决于培养物的生长期。在0.02 mmol·day(-1)l(-1)的低降解速率下未观察到传质速率限制。由于分区的重要性,红球菌属(Rhodococcus sp。)。预计JVH1菌株对整个原油中的硫物质表现出非选择性活性。

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