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Zero-Valent Iron Nanoparticles for Soil and Groundwater Remediation

机译:用于土壤和地下水修复的零价铁纳米粒子

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摘要

Zero-valent iron has been reported as a successful remediation agent for environmental issues, being extensively used in soil and groundwater remediation. The use of zero-valent nanoparticles have been arisen as a highly effective method due to the high specific surface area of zero-valent nanoparticles. Then, the development of nanosized materials in general, and the improvement of the properties of the nano-iron in particular, has facilitated their application in remediation technologies. As the result, highly efficient and versatile nanomaterials have been obtained. Among the possible nanoparticle systems, the reactivity and availability of zero-valent iron nanoparticles (NZVI) have achieved very interesting and promising results make them particularly attractive for the remediation of subsurface contaminants. In fact, a large number of laboratory and pilot studies have reported the high effectiveness of these NZVI-based technologies for the remediation of groundwater and contaminated soils. Although the results are often based on a limited contaminant target, there is a large gap between the amount of contaminants tested with NZVI at the laboratory level and those remediated at the pilot and field level. In this review, the main zero-valent iron nanoparticles and their remediation capacity are summarized, in addition to the pilot and land scale studies reported until date for each kind of nanomaterials.
机译:零价铁已被报告为环境问题的成功修复代理,广泛用于土壤和地下水补救。由于零价纳米粒子的高比表面积,已经出现了零价纳米颗粒的使用作为高效方法。然后,通常的纳米材料的发展,特别是纳米铁的性质,促进了它们在修复技术中的应用。结果,已经获得了高效和多功能的纳米材料。在可能的纳米粒子系统中,零价铁纳米粒子(NZVI)的反应性和可用性已经实现了非常有趣和有希望的结果使它们对地下污染物的修复特别有吸引力。事实上,大量的实验室和试点研究报告了这些基于NZVI的技术的高效性,用于修复地下水和受污染的土壤。虽然结果通常基于有限的污染物靶标,但在实验室水平的NZVI测试的污染物量之间存在较大的差距,并且在试验处修复的那些。在本文中,除了在每种纳米材料的日期报告的试点和土地规模研究外,还总结了主要零价铁纳米粒子及其修复能力。

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