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工程纳米颗粒对土壤微生物群落活性、丰度和多样性的影响:综述

Impact of engineered nanoparticles on the activity, abundance, and diversity of soil microbial communities: a review.

作者信息

Simonin Marie, Richaume Agnès

机构信息

Université de Lyon, Lyon, France.

出版信息

Environ Sci Pollut Res Int. 2015 Sep;22(18):13710-23. doi: 10.1007/s11356-015-4171-x. Epub 2015 Feb 4.

Abstract

This report presents an exhaustive literature review of the effects of engineered nanoparticles on soil microbial communities. The toxic effects on microbial communities are highly dependent on the type of nanoparticles considered. Inorganic nanoparticles (metal and metal oxide) seem to have a greater toxic potential than organic nanoparticles (fullerenes and carbon nanotubes) on soil microorganisms. Detrimental effects of metal and metal oxide nanoparticles on microbial activity, abundance, and diversity have been demonstrated, even for very low concentrations (<1 mg kg(-1)). On the opposite, the negative effects of carbon nanoparticles are observed only in presence of high concentrations (>250 mg kg(-1)), representing a worst case scenario. Considering that most of the available literature has analyzed the impact of an acute contamination of nanoparticles using high concentrations in a single soil, several research needs have been identified, and new directions have been proposed. The effects of realistic concentrations of nanoparticles based on the concentrations predicted in modelization studies and chronic contaminations should be simulated. The influence of soil properties on the nanoparticle toxicity is still unknown and that is why it is crucial to consider the ecotoxicity of nanoparticles in a range of different soils. The identification of soil parameters controlling the bioavailability and toxicity of nanoparticles is fundamental for a better environmental risk assessment.

摘要

本报告对工程纳米颗粒对土壤微生物群落的影响进行了详尽的文献综述。对微生物群落的毒性作用高度依赖于所考虑的纳米颗粒类型。无机纳米颗粒(金属和金属氧化物)对土壤微生物的毒性潜力似乎比有机纳米颗粒(富勒烯和碳纳米管)更大。金属和金属氧化物纳米颗粒对微生物活性、丰度和多样性的有害影响已得到证实,即使浓度非常低(<1毫克/千克(-1))。相反,仅在高浓度(>250毫克/千克(-1))存在时才观察到碳纳米颗粒的负面影响,这代表了一种最坏的情况。鉴于大多数现有文献分析了在单一土壤中使用高浓度纳米颗粒进行急性污染的影响,已确定了若干研究需求,并提出了新的方向。应模拟基于模型研究预测浓度和慢性污染的实际纳米颗粒浓度的影响。土壤性质对纳米颗粒毒性的影响仍然未知,这就是为什么在一系列不同土壤中考虑纳米颗粒的生态毒性至关重要。确定控制纳米颗粒生物有效性和毒性的土壤参数对于更好地进行环境风险评估至关重要。

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