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Application of enhanced bioremediation for TCE-contaminated groundwater: a pilot-scale study

机译:强化生物修复技术在受三氯乙烯(TCE)污染的地下水中的应用:中试研究

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摘要

The industrial solvent trichloroethylene (TCE) is among the most ubiquitous chlorinated compounds found in groundwater contamination. The objective of this pilot-scale study was to apply the combined biosparging and enhanced in situ bioremediation technology to remediate TCE-contaminated groundwater at a TCE-spill site. A biosparging well was installed inside the TCE plume for oxygen supplement. Primary substrate (cane molasses) was injected into the TCE plume through the biosparging well to enhance the rate of TCE co-metabolism. Three monitoring wells were installed in series downgradient of the biosparging well along the groundwater flow path. Results of polymerase chain reaction and nucleotide sequence analysis revealed that no appropriate TCE-degradation enzymes were observed in site groundwater. Thus, aerobic-activated sludge containing TCE-degraders collected from an industrial wastewater treatment plant were injected into the biosparging and three monitoring wells as an inoculum to provide microbial consortia for TCE biodegradation. After sludge injection, TCE-degraders (type Ⅰ and Ⅱ methanotrophs) and TCE-degrading enzymes (e.g. toluene monooxygenase, phenol monooxygenase) were detected in the injection and downgradient monitoring wells and remained in the aquifer during the 140-day pilot-scale study. Results indicate that significant TCE removal was observed (with TCE concentration dropped from 210 to 18 μg/L in substrate injection well). This reveals that appropriate substrates and inocula are required to effectively enhance the aerobic co-metabolic rate of TCE. Results from this study indicate that the enhanced in situ bioremediation is a promising technology to remediate TCE-contaminated groundwater.
机译:工业溶剂三氯乙烯(TCE)是在地下水污染中发现的最普遍的氯化化合物之一。这项中试规模研究的目的是应用结合的生物喷射技术和增强的原位生物修复技术,在TCE溢出地点修复受TCE污染的地下水。在TCE烟羽内部安装了一个生物喷射井,以补充氧气。通过生物喷射孔将主要底物(甘蔗糖蜜)注入TCE羽流中,以提高TCE共代谢率。沿地下水流路,沿生物分布井的降级顺序安装了三个监测井。聚合酶链反应和核苷酸序列分析的结果表明,在现场地下水中未观察到适当的TCE降解酶。因此,将从工业废水处理厂收集的含有TCE降解剂的需氧活化污泥注入接种物的生物喷雾和三个监测井中,为TCE生物降解提供微生物菌群。污泥注入后,在140天的中试规模研究中,在注入井和降级监测井中检测到了TCE降解物(Ⅰ和Ⅱ型甲烷营养生物)和TCE降解酶(例如甲苯单加氧酶,苯酚单加氧酶),并保留在含水层中。 。结果表明观察到了显着的TCE去除(底物注射孔中的TCE浓度从210降至18μg/ L)。这表明需要适当的底物和接种物才能有效地提高TCE的有氧代谢速度。这项研究的结果表明,增强的原位生物修复技术是修复受TCE污染的地下水的有前途的技术。

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  • 来源
    《Desalination and water treatment》 |2012年第3期|364-371|共8页
  • 作者单位

    Institute of Environmental Engineering, National Sun Yat-Sen University, Kaohsiung, Taiwan;

    Department of Environmental Engineering and Management, Chaoyang University of Technology, Taichung City, Taiwan;

    Department of Safety Health & Environmental Engineering, Chung Hwa University of Medical Technology, Tainan, Taiwan;

    Institute of Environmental Engineering, National Sun Yat-Sen University, Kaohsiung, Taiwan;

    Institute of Environmental Engineering, National Sun Yat-Sen University, Kaohsiung, Taiwan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bioremediation; Co-metabolism; Groundwater contamination; Trichloroethylene;

    机译:生物修复;共同代谢地下水污染;三氯乙烯;

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