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硫化零价铁在污染物转化中的最新进展。

Recent Advances in Sulfidated Zerovalent Iron for Contaminant Transformation.

机构信息

Department of Civil and Environmental Engineering, Western University, 1151 Richmond Rd., London, Ontario N6A 5B8, Canada.

Department of Civil Engineering, McGill University, 817 Sherbrooke Street West, Montreal, Quebec H3A 0C3, Canada.

出版信息

Environ Sci Technol. 2021 Jul 6;55(13):8464-8483. doi: 10.1021/acs.est.1c01251. Epub 2021 Jun 25.

Abstract

2021 marks 10 years since controlled abiotic synthesis of sulfidated nanoscale zerovalent iron (S-nZVI) for use in site remediation and water treatment emerged as an area of active research. It was then expanded to sulfidated microscale ZVI (S-mZVI) and together with S-nZVI, they are collectively referred to as S-(n)ZVI. Heightened interest in S-(n)ZVI stemmed from its significantly higher reactivity to chlorinated solvents and heavy metals. The extremely promising research outcomes during the initial period (2011-2017) led to renewed interest in (n)ZVI-based technologies for water treatment, with an explosion in new research in the last four years (2018-2021) that is building an understanding of the novel and complex role of iron sulfides in enhancing reactivity of (n)ZVI. Numerous studies have focused on exploring different S-(n)ZVI synthesis approaches, and its colloidal, surface, and reactivity (electrochemistry, contaminant selectivity, and corrosion) properties. This review provides a critical overview of the recent milestones in S-(n)ZVI technology development: (i) clear insights into the role of iron sulfides in contaminant transformation and long-term aging, (ii) impact of sulfidation methods and particle characteristics on reactivity, (iii) broader range of treatable contaminants, (iv) synthesis for complete decontamination, (v) ecotoxicity, and (vi) field implementation. In addition, this review discusses major knowledge gaps and future avenues for research opportunities.

摘要

2021 年标志着受控非生物合成硫化纳米零价铁(S-nZVI)用于场地修复和水处理的研究领域出现 10 周年。此后,研究领域进一步扩展到硫化微米零价铁(S-mZVI),S-nZVI 和 S-mZVI 统称为 S-(n)ZVI。S-(n)ZVI 的研究兴趣日益浓厚,主要是因为它对氯化溶剂和重金属的反应性显著提高。在最初的研究阶段(2011-2017 年)取得了非常有前景的研究成果,这促使人们对基于(n)ZVI 的水处理技术重新产生了兴趣,在过去四年(2018-2021 年),新的研究呈爆炸式增长,对铁硫化物在提高(n)ZVI 反应性方面的新颖而复杂的作用有了更深入的了解。许多研究都集中在探索不同的 S-(n)ZVI 合成方法及其胶体、表面和反应性(电化学、污染物选择性和腐蚀)特性。本文对 S-(n)ZVI 技术发展的最新里程碑进行了批判性的综述:(i)深入了解铁硫化物在污染物转化和长期老化过程中的作用,(ii)硫化方法和颗粒特性对反应性的影响,(iii)更广泛的可处理污染物范围,(iv)用于完全去污的合成,(v)生态毒性,以及(vi)现场实施。此外,本文还讨论了主要的知识空白和未来的研究机会。

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