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Biodegradation of 17α-ethinylestradiol in sediment/water systems affected by two different rhamnolipidic homologues

机译:两种不同鼠疫同源物影响的沉积物/水系统中17α-乙烯雌二醇的生物降解

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The shake flask aerobic biodegradation experiment was used to study the effect on biodegradation of 17α-ethinylestradiol (EE2) in the sediment/water system affected by mono-rhamnolipid (RL-F1) and di-rhamnolipid (RL-F2). The results showed that RL-F1 and RL-F2 had no inhibitory effect on EE2 biodegradation. The effect of RL-F1 on enhanced biodegradation of EE2 was larger than that of RL-F2. In 6 mM and 10 mM of the rhamnolipidic functioned systems, EE2 biotransformation rates affected by RL-F1 were respectively 7.6 and 8.2 times of those of RL-F2 corresponding systems. The accumulation and change rule of the intermediate metabolites M.l with the polarity greater than EE2 and M.3 with the polarity weaker then EE2 in the biodegradation process were analyzed. In the RL-F2 systems, the time for the accumulative amounts of M. 1 and M.3 up to the peak was correspondingly lagged and their output was relatively lower. The testing result of rhamnolipids in the sample showed that RL-F1 was more biodegradable than RL-F2. The bioavailability of di-rhamnolipidic micelle solubilized with EE2 was inferior to that of mono-rhamnolipid, making the organic uptake and metabolism process of microorganisms slow down.
机译:摇瓶有氧生物降解实验用于研究受单核脂溢性(RL-F1)和Di-rhamolipid(RL-F2)影响的沉积物/水系统中17α-乙烯雌二醇(EE2)的生物降解的影响。结果表明,RL-F1和RL-F2对EE2生物降解没有抑制作用。 RL-F1对EE2的增强生物降解的影响大于RL-F2的影响。在6mm和10mm的鼠李酮功能化系统中,受R1-F1影响的EE2生物转化率分别为RL-F2对应系统的7.6和8.2倍。分析了具有极性大于EE2和M.2的中间代谢物M.L的中间代谢物M.L的积累和变化规律,然后在生物降解过程中较高的EE2。在RL-F2系统中,对应于峰的累积量的M. 1和M.3的时间相应地滞后,并且它们的输出相对较低。样品中rhamnolipids的测试结果显示RL-F1比R1-F2更生物降解。溶解与EE2的二核脂素胶束的生物利用度低于单核醇脂的较差,使微生物的有机摄取和代谢过程减缓。

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