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Development of hexachlorobenzene-dechlorinating mixed cultures using polysorbate surfactants as a carbon source

机译:使用聚山梨酯表面活性剂作为碳源开发六氯苯-脱氯混合培养物

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The use of three nonionic polysorbate surfactants - Tween 60, 61 or 65 - as the sole carbon source to sustain methanogenesis and dechlorination, as well as the effect of long-term exposure of enriched cultures to these surfactants, was investigated through the development of three sediment-derived cultures. Over a one-year period, the carbon source in these cultures was gradually switched from glucose and methanol to surfactant only, while the surfactant concentration was increased from an initial concentration of 100 mg/L to 400 mg/L. In each feeding cycle, the surfactants were partially degraded and converted to methane. Transition from glucose to Tween surfactants as the electron donor did not affect the rate, extent, and pathway of HCB transformation. These surfactants sustained the reductive dechlorination of HCB even after one year of continuous addition to the enriched cultures. This study demonstrated that reductive dechlorination of HCB sustained by the fermentation of Tween surfactants is feasible. The results support the use of anaerobically degradable Tween surfactants for the biotransformation of polychlorinated organic compounds. In principle, these surfactants could be used to simultaneously increase the bioavailability of subsurface contaminants while serving as the carbon and electron source for microbial reductive dechlorination. [References: 12]
机译:通过开发三种非离子型聚山梨酯表面活性剂Tween 60、61或65作为维持甲烷生成和脱氯的唯一碳源,以及富集培养物长期暴露于这些表面活性剂的作用,进行了研究。沉积物衍生的文化。在一年的时间内,这些培养物中的碳源逐渐从葡萄糖和甲醇转变为仅表面活性剂,而表面活性剂的浓度从初始浓度100 mg / L增加到400 mg / L。在每个进料循环中,表面活性剂被部分降解并转化为甲烷。从葡萄糖过渡到吐温表面活性剂作为电子给体不会影响HCB转化的速率,程度和途径。这些表面活性剂即使在连续添加到丰富的培养物中一年后仍能维持HCB的还原性脱氯作用。这项研究表明,通过吐温表面活性剂的发酵持续进行的HCB还原脱氯是可行的。结果支持厌氧可降解的吐温表面活性剂用于多氯代有机化合物的生物转化。原则上,这些表面活性剂可用于同时增加地下污染物的生物利用度,同时充当微生物还原脱氯的碳源和电子源。 [参考:12]

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