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A Review of the Environmental Implications of in situ Remediation by Nanoscale Zero Valent Iron (nZVI): Behavior Transport and Impacts on Microbial Communities

机译:纳米零价铁(nZVI)原位修复的环境影响综述:行为运输和对微生物群落的影响

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摘要

The increasing use of strategies incorporating nanoscale zero valent iron (nZVI) for soil and groundwater in situ remediation is raising some concerns regarding the potential adverse effects nZVI could have on indigenous microbial communities and ecosystem functioning. This review provides an overview of the current literature pertaining to the impacts of nZVI applications on microbial communities. Toxicity studies suggest that cell membrane disruption and oxidative stress through the generation of Fe2+ and reactive oxygen species by nZVI are the main mechanisms contributing to nZVI cytotoxicity. In addition, nZVI has been shown to substantially alter the taxonomic and functional composition of indigenous communities. However, because the physico-chemical conditions encountered in situ highly modulate nZVI toxicity, a better understanding of the environmental factors affecting nZVI toxicity and transport in the environment is of primary importance in evaluating the ecological consequences that could result from a more extensive use of nZVI.
机译:越来越多地采用将纳米级零价铁(nZVI)纳入土壤和地下水原位修复的策略,这引起了人们对nZVI可能对土著微生物群落和生态系统功能产生潜在不利影响的担忧。这篇综述概述了有关nZVI应用对微生物群落影响的最新文献。毒性研究表明,nZVI通过生成Fe 2 + 和活性氧来破坏细胞膜和氧化应激是导致nZVI细胞毒性的主要机制。此外,nZVI已显示出可以大大改变土著社区的分类和功能组成。但是,由于原位遇到的物理化学条件会极大地调节nZVI的毒性,因此,更好地了解影响nZVI毒性和环境中运输的环境因素对于评估因广泛使用nZVI可能导致的生态后果至关重要。 。

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