绿色合成金属氧化物纳米复合材料的废水处理及作用

Durr-e-Shahwar Noman, G. Owens
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引用次数: 0

摘要

类金属水污染是一个全球性的环境问题。由于它们的生物蓄积性、水溶性和与环境的相互作用,它们对人类和生态系统的健康构成威胁。传统的去除方法存在效率低、操作条件敏感、资金和操作成本高等固有局限性,限制了这些技术的大规模应用。虽然吸附通常被认为是一种有效且负担得起的修复技术,但许多常见的吸附剂通常具有不可再生性和高运营成本等局限性。因此,传统修复技术的局限性导致了诸如绿色纳米技术等用于去除类金属污染物的先进处理技术的新途径的迅速发展。与目前许多可用的吸附剂相比,纳米颗粒通常具有独特的性质,如尺寸小,活性位点多,表面积大,易于分离,反应活性高,可提高去除效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wastewater Treatment and Role of Green Synthesized Metal Oxide Nanocomposites
Water pollution by metalloids is a global environmental concern. Owing to their propensity for bioaccumulation, water solubility, and interaction with environment, they are threatening both human and ecosystem health. Inherent limitations like low efficiency, sensitive operating conditions, and high capital and operating costs are associated with conventional removal methods which restricts adoption of these technologies on large scale. While adsorption is commonly recognized as both an effective and affordable remediation technology, many common adsorbents often have inherited limitations including non-renewability and high operating costs. Thus, limitations in conventional remediation technologies have headed to the rapid progression of new avenues for advanced treatment technologies for metalloid pollutant removal such as green nanotechnology. In contrast to many of the currently available adsorbents, nanoparticles often have unique properties such as tiny size, more active sites and big surface area, easy separation, and high reactivity that enhance removal efficiencies.
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