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首页> 外文期刊>International Biodeterioration & Biodegradation >Reductive dechlorination of perchloroethene (PCE) and bacterial community changes in a continuous-flow, two-stage anaerobic column
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Reductive dechlorination of perchloroethene (PCE) and bacterial community changes in a continuous-flow, two-stage anaerobic column

机译:环氯乙烯(PCE)和细菌群落的还原脱氯化在连续流动,两级厌氧柱中的变化

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摘要

This study is aimed at investigating the performance of the continuous-flow, two-stage anaerobic column for the reductive dechlorination of perchloroethene (PCE) in a trichloroethene (TCE)-contaminated aquifer without bioaugmentation. Results indicated that complete dechlorination of PCE to cis-dichloroethene (DCE) was observed within the first 12 days after the addition of lactate and PCE (620:1 mg mg(-1) mass ratio). The PCE conversion to ethene was initially observed in the 2nd column after 70 days (during phase II) upon the increase of lactate to PCE mass ratio to 5000:1 (mg mg(-1)). However, the degradation of PCE to ethene occurred in the 1st column after 30 days operation of phase IV (217-310 d) under the high PCE feed conditions (33.65 +/- 2.86 mu M). 16S rDNA clone library sequence analysis confirmed that Dehalobacter sp., Desulfuromonas sp., Desulfovibrio sp. Geobacter sp., Methanosaeta sp., Methanobacterium paludism, and M. spelaei were the dominant species in the original aquifer, and their relative abundance were further changed following lactate addition. Dehalococcoides mccartyi sequences were retrieved after lactate stimulation. Overall, the continuous-flow, two-stage anaerobic column process exhibited the maximum dechlorination (6.23 mu mol L-1 hr(-1)) of PCE without bioaugmentation, indicating its potential up-scaling application in PCE dechlorination.
机译:本研究旨在研究连续流动,两级厌氧色谱柱的性能,用于在没有生物沉积的三氯乙烯(TCE) - 丙烯乙烯(TCE) - 丙烯乙烯(TCE)中的环氯乙烯(PCE)的脱氯。结果表明,在添加乳酸和PCE(620:1mg(-1)质量比的前12天内,在前12天内完成PCE对顺式二氯乙烯(DCE)的完全脱氯。在70天(II期间)后,最初在第2栏(II期间)在乳酸盐增加至5000:1(Mg Mg(-1))后,在第2栏中在第2栏中观察到乙烯的PCE转化。然而,在高PCE进料条件下(33.65 +/- 2.86 mu m)下,在第1阶段(217-310d)的30天后,在第1栏中发生PCE对乙烯的降解。 16S RDNA克隆库序列分析证实了Dehalobacter SP。,Desulfuromonas SP。,Desulfovibrio SP。 Geobacter Sp。,甲蛋白苦参,甲基杆菌和M. spelaei是原始含水层中的主要种类,后者在乳酸加入后进一步改变它们的相对丰度。在乳酸刺激后检测去卤素纤维素髓质序列。总的来说,连续流动,两级厌氧柱过程表现出最大脱氯(6.23μmMolL-1 HR(-1))的PCE,无生物沉积,表明其在PCE脱氯中的潜在上缩放应用。

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