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首页> 外文期刊>Acta Biochimica Polonica >Bioavailability of hydrocarbons to bacterial consortia during Triton X-100 mediated biodegradation in aqueous media*
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Bioavailability of hydrocarbons to bacterial consortia during Triton X-100 mediated biodegradation in aqueous media*

机译:在水介质中Triton X-100介导的生物降解过程中,碳氢化合物对细菌群落的生物利用度*

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摘要

The aim of our study was to investigate the effect of Triton X-100 on the biodegradation efficiency of hexadecane and phenanthrene carried out by two bacterial consortia. It was established that the tested consortia were not able to directly uptake compounds closed in micelles. It was observed that in micellar systems the nonionic synthetic surfactant was preferentially degraded (the degradation efficiency of Triton X-100 after 21 days was 70% of the initial concentration — 500 mg/l), followed by a lesser decomposition of hydrocarbon released from the micelles (30% for hexadecane and 20% for phenanthrene). However, when hydrocarbons were used as the sole carbon source, 70% of hexadecane and 30% of phenanthrene were degraded. The degradation of the surfactant did not contribute to notable shifts in bacterial community dynamics, as determined by Real-Time PCR. The obtained results suggest that if surfactant- supplementation is to be used as an integral part of a bioremediation process, then possible bioavailability decrease due to entrapment of the contaminant into surfactant micelles should also be taken into consideration, as this phenomenon may have a negative impact on the biodegradation efficiency. Surfactant-induced mobilization of otherwise recalcitrant hydrocarbons may contribute to the spreading of contaminants in the environment and prevent their biodegradation.
机译:我们的研究目的是研究Triton X-100对两个细菌联合体进行的十六烷和菲生物降解效率的影响。已经确定,测试的财团不能直接摄取封闭在胶束中的化合物。观察到,在胶束系统中,非离子型合成表面活性剂优先降解(Triton X-100在21天后的降解效率为初始浓度的70%(500 mg / l)),随后分解的碳氢化合物的降解较少。胶束(十六烷为30%,菲为20%)。但是,当碳氢化合物用作唯一碳源时,70%的十六烷和30%的菲被降解。表面活性剂的降解不会导致细菌群落动态的显着变化,如实时PCR所确定。获得的结果表明,如果将补充表面活性剂用作生物修复过程的组成部分,则还应考虑由于污染物截留在表面活性剂胶束中而可能导致的生物利用度降低,因为这种现象可能产生负面影响。在生物降解效率上。表面活性剂诱导的否则难降解的碳氢化合物的动员可能有助于污染物在环境中的扩散并阻止其生物降解。

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