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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Biostimulation of Indigenous Microbial Communities for Anaerobic Transformation of Pentachlorophenol in Paddy Soils of Southern China
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Biostimulation of Indigenous Microbial Communities for Anaerobic Transformation of Pentachlorophenol in Paddy Soils of Southern China

机译:中国南方稻田土壤中微生物群落对五氯苯酚的厌氧转化

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摘要

This study explored biostimulation mechanisms with an electron donor and a shuttle for accelerating pentachlorophenol (PCP) transformation in iron-rich soils. The results indicated that indigenous microbial communities are important for PCP transformation in soils. Biostimulation of indigenous microbial communities by the addition of lactate and anthraquinone-2,6-disulfonate (AQDS) led to the enhanced rates of PCP dechlorination by the dechSorinating- and iron-reducing bacteria in soils. The electrochemical studies using cyclic voitammograms and microbial current measurements confirmed the high reduction potential and the large amount of electrons generated under biostimulation conditions, which were responsible for the higher rates of PCP transformation. After biostimulation treatments by the additions of lactate and/or AQDS during PCP dechlorination processes, microbial community analysis by the terminal restriction fragment length polymorphism (T-RFLP) method showed the abundance terminal restricted fragments (T-RFs), an indicator of bacterial abundance, which represents the dechlorinating- and iron-reducing bacteria, suggesting their critical roles in PCP dechlorination in soils.
机译:这项研究探索了利用电子供体和航天飞机在富铁土壤中加速五氯苯酚(PCP)转化的生物刺激机制。结果表明,土著微生物群落对于土壤中五氯苯酚的转化很重要。通过添加乳酸和2,6-二磺酸蒽醌(AQDS)对土著微生物群落的生物刺激导致土壤中dechSorinating和铁还原的细菌PCP脱氯速率增加。使用循环伏安图和微生物电流测量的电化学研究证实了高还原电位和在生物刺激条件下产生的大量电子,这是PCP转化率更高的原因。在PCP脱氯过程中通过添加乳酸和/或AQDS进行生物刺激处理后,通过末端限制性片段长度多态性(T-RFLP)方法进行的微生物群落分析显示,末端限制性片段(T-RFs)丰富,这是细菌丰度的指标代表脱氯和还原铁的细菌,表明它们在土壤PCP脱氯中的关键作用。

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