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Synthesis and Application of Zero-Valent Iron Nanoparticles in Water Treatment Environmental Remediation Catalysis and Their Biological Effects

机译:零价铁纳米粒子的合成及其在水处理环境修复催化及其生物学效应中的应用

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摘要

Present and past anthropogenic pollution of the hydrosphere and lithosphere is a growing concern around the world for sustainable development and human health. Current industrial activity, abandoned contaminated plants and mining sites, and even everyday life is a pollution source for our environment. There is therefore a crucial need to clean industrial and municipal effluents and remediate contaminated soil and groundwater. Nanosized zero-valent iron (nZVI) is an emerging material in these fields due to its high reactivity and expected low impact on the environment due to iron’s high abundance in the earth crust. Currently, there is an intensive research to test the effectiveness of nZVI in contaminant removal processes from water and soil and to modify properties of this material in order to fulfill specific application requirements. The number of laboratory tests, field applications, and investigations for the environmental impact are strongly increasing. The aim of the present review is to provide an overview of the current knowledge about the catalytic activity, reactivity and efficiency of nZVI in removing toxic organic and inorganic materials from water, wastewater, and soil and groundwater, as well as its toxic effect for microorganisms and plants.
机译:目前和过去人类对水圈和岩石圈的污染,在世界范围内日益引起人们对可持续发展和人类健康的关注。当前的工业活动,废弃的受污染的植物和采矿场所,甚至日常生活,都是我们环境的污染源。因此,迫切需要清洁工业和市政废水,并修复污染的土壤和地下水。纳米零价铁(nZVI)由于具有很高的反应活性,并且由于铁在地壳中的丰度很高,因此对环境的影响较小,因此在这些领域是新兴材料。当前,有一项深入的研究来测试nZVI在从水和土壤中去除污染物的过程中的有效性,并修改这种材料的性能,以满足特定的应用要求。实验室测试,现场应用和环境影响调查的数量正在急剧增加。本综述的目的是概述nZVI从水,废水,土壤和地下水中去除有毒有机和无机材料的催化活性,反应性和效率的当前知识,以及其对微生物的毒性作用。和植物。

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