Advancements in removing common antibiotics from wastewater using nano zero valent iron

零价铁 环境修复 环境化学 污染物 吸附 废水 纳米- 有机质 环境科学 化学 环境工程 材料科学 污染 生态学 有机化学 复合材料 生物
作者
Shuxian Wei,Chuan He,Lanyue Zhang,Canhua Li,Jiamao Li,Gang DU
出处
期刊:RSC Advances [Royal Society of Chemistry]
卷期号:14 (36): 26272-26291 被引量:23
标识
DOI:10.1039/d4ra04336g
摘要

The pollutants such as heavy metals, organic matter, and nitrates in soil and water pose challenges to environmental remediation technology. Nano zero valent iron has shown enormous potential in the field of environmental remediation due to its excellent adsorption performance. By using carbon based materials, rock minerals, biomolecules, etc., as supporting materials for nZVI, and through structural and performance modifications, its performance has been successfully optimized, reducing defects such as aggregation and easy oxidation of the material. This article compares and summarizes the modification effects of different loadings on nZVI, and comprehensively reviews the latest progress, preparation methods, and application of nZVI particles in soil and water remediation. Specifically, this article explores in detail the impact and mechanism of nZVI particles in commonly used antibiotics contaminated environments. Firstly, the combination methods of different types of materials with zero valent iron, as well as the synthesis methods and application scenarios of nZVI, were integrated. Secondly, the interaction mechanism between pollutants and nZVI was introduced in detail, including adsorption, redox reactions, and co-precipitation. Subsequently, environmental factors that affect repair efficiency were emphasized, such as pH value, coexisting components, oxygen, contact time, and temperature. Finally, the challenges faced by the application of nZVI in actual polluted soil and water bodies, as well as the prospects for its long-term efficacy and safety evaluation, are proposed to promote further development in the future.
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