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首页> 外文期刊>Chemosphere >EFFECTS OF ALTERNATIVE ELECTRON DONORS, ACCEPTORS AND INHIBITORS ON PENTACHLOROPHENOL DECHLORINATION IN SOIL
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EFFECTS OF ALTERNATIVE ELECTRON DONORS, ACCEPTORS AND INHIBITORS ON PENTACHLOROPHENOL DECHLORINATION IN SOIL

机译:交替电子给体,受体和抑制剂对土壤中五氯酚脱氯的影响

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The potential dechlorination of pentachlorophenol (PCP) in soil by a DCP-adapted consortium was investigated Results show that PCP dechlorination was enhanced under sulfate reduction and methanogenic conditions, but inhibited under denitrifying conditions within a 20-day incubation period. Under those same three conditions we also found that PCP dechlorination was enhanced by the addition of lactate, pyruvate, and acetate, but delayed by the addition of manganese oxide and inhibited by the addition of ferric chloride. In addition, our results failed to show any relationship between PCP dechlorination and oxidation-reduction potential (ORP) or changes in pH values. Treatment with lactate caused the greatest increase in methane production, the highest rates of sulfate or nitrate consumption; adding manganese oxide led to the second greatest increase, and the addition of ferric chloride the least. The addition of methylphenols and nitrophenols were found to inhibit PCP dechlorination. Methanogen may have constituted the major dechlorination population in our experimental consortium.
机译:研究了适应DCP的财团对土壤中五氯苯酚(PCP)的潜在脱氯结果。结果表明,在硫酸盐还原和产甲烷条件下,PCP的脱氯作用增强,但在20天的孵育时间内,在反硝化条件下抑制作用。在这三个条件下,我们还发现,通过添加乳酸,丙酮酸和乙酸盐可以增强五氯苯酚的脱氯作用,但是通过添加氧化锰可以延迟五氯苯酚的脱氯,而通过氯化铁的添加可以抑制五氯苯酚的脱氯作用。此外,我们的结果未能显示PCP脱氯与氧化还原电位(ORP)或pH值变化之间的任何关系。用乳酸处理可最大程度地提高甲烷产量,硫酸盐或硝酸盐消耗量最高。添加氧化锰导致的增幅第二高,而氯化铁的添加则增幅最小。发现添加甲基酚和硝基酚可抑制PCP脱氯。在我们的实验联盟中,产甲烷菌可能构成了主要的脱氯种群。

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