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同时实现污染物和氧化剂的纳米催化表面活化,以实现高效水净化。

Simultaneous nanocatalytic surface activation of pollutants and oxidants for highly efficient water decontamination.

机构信息

Department of Environmental Science and Engineering, University of Science and Technology of China, 230026, Hefei, China.

Department of Chemical and Environmental Engineering, Yale University, New Haven, CT, 06520, USA.

出版信息

Nat Commun. 2022 May 30;13(1):3005. doi: 10.1038/s41467-022-30560-9.

Abstract

Removal of organic micropollutants from water through advanced oxidation processes (AOPs) is hampered by the excessive input of energy and/or chemicals as well as the large amounts of residuals resulting from incomplete mineralization. Herein, we report a new water purification paradigm, the direct oxidative transfer process (DOTP), which enables complete, highly efficient decontamination at very low dosage of oxidants. DOTP differs fundamentally from AOPs and adsorption in its pollutant removal behavior and mechanisms. In DOTP, the nanocatalyst can interact with persulfate to activate the pollutants by lowering their reductive potential energy, which triggers a non-decomposing oxidative transfer of pollutants from the bulk solution to the nanocatalyst surface. By leveraging the activation, stabilization, and accumulation functions of the heterogeneous catalyst, the DOTP can occur spontaneously on the nanocatalyst surface to enable complete removal of pollutants. The process is found to occur for diverse pollutants, oxidants, and nanocatalysts, including various low-cost catalysts. Significantly, DOTP requires no external energy input, has low oxidant consumption, produces no residual byproducts, and performs robustly in real environmental matrices. These favorable features render DOTP an extremely promising nanotechnology platform for water purification.

摘要

通过高级氧化工艺(AOPs)从水中去除有机微量污染物受到过度投入能源和/或化学品以及不完全矿化导致的大量残余物的阻碍。在此,我们报告了一种新的水净化范例,即直接氧化转移过程(DOTP),它能够以非常低的氧化剂剂量实现完全、高效的净化。DOTP 在其污染物去除行为和机制方面与 AOPs 和吸附有根本区别。在 DOTP 中,纳米催化剂可以与过硫酸盐相互作用,通过降低其还原势能来激活污染物,从而触发污染物从主体溶液到纳米催化剂表面的非分解氧化转移。通过利用多相催化剂的活化、稳定和积累功能,DOTP 可以在纳米催化剂表面自发发生,从而实现污染物的完全去除。该过程被发现适用于各种污染物、氧化剂和纳米催化剂,包括各种低成本催化剂。重要的是,DOTP 不需要外部能源输入,氧化剂消耗低,不产生副产物残余物,并且在实际环境基质中表现强劲。这些有利的特征使得 DOTP 成为一种极具前景的水净化纳米技术平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c42/9151758/3a12253b81b0/41467_2022_30560_Fig1_HTML.jpg

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