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采用铁(0)-微生物综合处理方法降解黑索今。

RDX degradation using an integrated Fe(0)-microbial treatment approach.

作者信息

Wildman M J, Alvarez P J

机构信息

University of Iowa, Department of Civil and Environmental Engineering, Iowa City, Iowa 52242-1527, USA.

出版信息

Water Sci Technol. 2001;43(2):25-33.

Abstract

RDX is a persistent and highly mobile groundwater contaminant that represents a major remediation challenge at numerous munitions manufacturing and load-assemblage-package facilities. This work presents proof of concept that permeable reactive iron barriers might be a viable approach to intercept and degrade RDX plumes. Specifically, RDX was rapidly reduced in aquifier microcosms amended with Fe(0) powder, and in flow-through columns packed with steel wool. The rate and extent of RDX degradation in microcosms was enhanced by anaerobic bacteria that feed on cathodic hydrogen (i.e., H2 produced during anaerobic Fe(0) corrosion by water). Apparently, the hydrogenotrophic consortium that exploits Fe(0) corrosion as a metabolic niche participated in the further degradation of heterocyclic intermediates produced by the reaction of RDX with Fe(0). Reductive treatment of RDX with Fe(0) also reduced its toxicity to microorganisms and enhanced its subsequent biodegradability under either anaerobic or anaerobic conditions. Therefore, a combined or sequential Fe(0)-biological treatment approach might improve treatment efficiency.

摘要

黑索金是一种持久性且流动性很强的地下水污染物,在众多弹药制造及装填组装包装设施中,它都是一个重大的修复难题。这项研究提供了概念验证,即渗透性反应铁屏障可能是拦截和降解黑索金羽流的一种可行方法。具体而言,在用零价铁粉修正的含水层微观世界以及填充钢丝绒的流通柱中,黑索金迅速减少。微观世界中黑索金的降解速率和程度因以阴极氢(即水在厌氧零价铁腐蚀过程中产生的氢气)为食的厌氧细菌而加快。显然,利用零价铁腐蚀作为代谢生态位的氢营养菌群参与了黑索金与零价铁反应产生的杂环中间体的进一步降解。用零价铁对黑索金进行还原处理还降低了其对微生物的毒性,并增强了其在厌氧或好氧条件下随后的生物降解性。因此,联合或顺序的零价铁 - 生物处理方法可能会提高处理效率。

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