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Organohalide Respiration with Chlorinated Ethenes under Low pH Conditions

机译:在低pH条件下用氯化乙烯进行有机卤化物呼吸

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摘要

Bioremediation at chlorinated solvent sites often leads to groundwater acidification due to electron donor fermentation and enhanced dechlorination activity. The microbial reductive dechlorination process is robust at circumneutral pH, but activity declines at groundwater pH values below 6.0. Consistent with this observation, the activity of tetrachloroethene (PCE) dechlorinating cultures declined at pH 6.0 and was not sustained in pH 5.5 medium, with one notable exception. Sulfurospirillum multivorans dechlorinated PCE to ds-l,2-dichloroethene (cDCE) in pH 5.5 medium and maintained this activity upon repeated transfers. Microcosms established with soil and aquifer materials from five distinct locations dechlorinated PCE-to-ethene at pH 5.5 and pH 7.2. Dechlorination to ethene was maintained following repeated transfers at pH 7.2, but no ethene was produced at pH 5.5, and only the transfer cultures derived from the Axton Cross Superfund (ACS) microcosms sustained PCE dechlorination to cDCE as a final product. 16S rRNA gene amplicon sequencing of pH 72 and pH 5.5 ACS enrichments revealed distinct microbial communities, with the dominant dechlorinator being Dehabcoccoides in pH 7.2 and Sulfurospirillum in pH 5.5 cultures. PCE-to-tochloroethene- (TCE-) and PCE-to-cDCE-dechlorinating isolates obtained from the ACS pH 5.5 enrichment shared 98.6%, and 98.5% 16S rRNA gene sequence similarities to Sulfurospirillum multivorans. These findings imply that sustained Dehabcoccoides activity cannot be expected in low pH (i.e., < 5.5) groundwater, and organohalide-respiring Sulfurospirillum spp. are key contributors to in situ PCE reductive dechlorination under low pH conditions.
机译:由于电子给体发酵和增强的脱氯活性,在氯化溶剂处进行生物修复通常会导致地下水酸化。微生物还原性脱氯过程在环境pH值下很稳定,但在地下水pH值低于6.0时活性下降。与此观察结果一致的是,四氯乙烯(PCE)脱氯培养物的活性在pH 6.0时下降,在pH 5.5培养基中没有持续,只有一个明显的例外。在pH 5.5介质中,多硫磺螺旋菌将PCE脱氯成ds-1,2-二氯乙烯(cDCE),并在重复转移后保持这种活性。用来自五个不同位置的土壤和含水层材料建立的缩微将pH 5.5和pH 7.2的PCE脱氯为乙烯。在pH 7.2下重复转移后,仍保持脱氯为乙烯,但在pH 5.5时不产生乙烯,只有来自Axton Cross Superfund(ACS)微观世界的转移培养物才能将PCE脱氯持续作为最终产品转化为cDCE。 pH值72和pH 5.5的16S rRNA基因扩增子测序ACS富集显示了独特的微生物群落,主要的脱氯剂是pH 7.2的Dehabcoccoides和pH 5.5的硫磺螺旋菌。从ACS pH 5.5富集获得的PCE-to-totochloroethene-(TCE-)和PCE-to-cDCE-dechlorinating分离株与复螺硫螺旋藻共有98.6%和98.5%的16S rRNA基因序列相似性。这些发现暗示在低pH(即<5.5)地下水和呼吸有机卤化物的Sulfurospirillum spp中不能期望Dehabcoccoides持续活性。是低pH条件下原位PCE还原脱氯的关键因素。

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  • 来源
    《Environmental Science & Technology》 |2017年第15期|8579-8588|共10页
  • 作者单位

    Center for Environmental Biotechnology,Department of Civil and Environmental Engineering,Joint Institute for Biological Sciences (JIBS), Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, United States;

    Department of Civil and Environmental Engineering, Tufts University, Medford, Massachusetts 02155, United States;

    Department of Civil and Environmental Engineering, Tufts University, Medford, Massachusetts 02155, United States;

    Center for Environmental Biotechnology,Department of Microbiology,Joint Institute for Biological Sciences (JIBS), Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, United States;

    Department of Civil and Environmental Engineering, Tufts University, Medford, Massachusetts 02155, United States;

    Center for Environmental Biotechnology,Department of Civil and Environmental Engineering,Department of Microbiology,Department of Biosystems Engineering and Soil Science, University of Tennessee, Knoxville, Tennessee 37996, United States,Biosciences Division,Joint Institute for Biological Sciences (JIBS), Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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