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零价铁修复受混合溴代乙烯污染的地下水

Zero valent iron remediation of a mixed brominated ethene contaminated groundwater.

作者信息

Cohen Elizabeth L, Patterson Bradley M, McKinley Allan J, Prommer Henning

机构信息

CSIRO Land and Water, Private Bag No. 5, Wembley WA 6913, Australia.

出版信息

J Contam Hydrol. 2009 Jan 26;103(3-4):109-18. doi: 10.1016/j.jconhyd.2008.09.010. Epub 2008 Sep 30.

Abstract

The suitability of a granulated zero valent iron (ZVI) permeable reactive barrier (PRB) remediation strategy was investigated for tribromoethene (TriBE), cis-1,2-dibromoethene (c-DBE), trans-1,2-dibromoethene (t-DBE) and vinyl bromide (VB), via batch and large-scale column experiments that were subsequently analysed by reactive transport modelling. The brominated ethenes in both batch and large-scale column experiments showed rapid (compared to controls and natural attenuation) degradation in the presence of ZVI. In the large-scale column experiment, degradation half-lives were 0.35 days for TriBE, 0.50 days for c-DBE, 0.31 days for t-DBE and 0.40 days for VB, under site groundwater flow conditions, resulting in removal of brominated ethenes within the first 0.2 m of a 1.0 m thick ZVI layer, indicating that a PRB groundwater remediation strategy using ZVI could be used successfully. In the model simulations of the ZVI induced brominated ethene degradation, assuming a dominant reductive beta-elimination pathway via bromoacetylene and acetylene production, simulated organic compound concentrations corresponded well with both batch and large-scale column experimental data. Changes of inorganic reactants were also well captured by the simulations. The similar ZVI induced degradation pathway of TriBE and TCE suggests that outcomes from research on ZVI induced TCE remediation could also be applied to TriBE remediation.

摘要

通过批量实验和大型柱实验,随后进行反应性输运建模,研究了颗粒状零价铁(ZVI)渗透反应屏障(PRB)修复策略对三溴乙烯(TriBE)、顺式-1,2-二溴乙烯(c-DBE)、反式-1,2-二溴乙烯(t-DBE)和溴乙烯(VB)的适用性。在批量实验和大型柱实验中,溴代乙烯在ZVI存在下均显示出快速降解(与对照和自然衰减相比)。在大型柱实验中,在现场地下水流条件下,TriBE的降解半衰期为0.35天,c-DBE为0.50天,t-DBE为0.31天,VB为0.40天,导致在1.0米厚的ZVI层的前0.2米内溴代乙烯被去除,这表明使用ZVI的PRB地下水修复策略可以成功应用。在ZVI诱导溴代乙烯降解的模型模拟中,假设通过溴乙炔和乙炔生成的主要还原β-消除途径,模拟的有机化合物浓度与批量实验和大型柱实验数据均吻合良好。模拟还很好地捕捉到了无机反应物的变化。TriBE和TCE的ZVI诱导降解途径相似,这表明ZVI诱导TCE修复的研究结果也可应用于TriBE修复。

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