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A structural engineering-inspired CdS based composite for photocatalytic remediation of organic pollutant and hexavalent chromium

机译:用于有机污染物和六价铬的光催化修复的结构工程灵感基于CDS的复合材料

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摘要

Realizing the efficient treatment of acid drainage using semiconductor photocatalysis at low pH values remains a challenging and necessary project for widespread heavy metal ions and organic aromatic pollutants. Here, the synergistic photocatalytic remediation of hexavalent chromium and phenol under visible light was studied with the purpose of both environmental remediation and sustainable development in mind. Using a structural engineering strategy, the typical CdS-based heterojunction with outer nanocrystal cluster protection is un-precedentedly endowed with the efficient and recyclable capability of a visible-light-driven photocatalysis for the remediation of pollutants in strong acidic conditions. Owing to the structure-enabled acidic stability, the simultaneous remediation of Cr(VI) and phenol can be undertaken in an efficient and recyclable mode at pH = 2.0-7.0. This study fundamentally evolves a representative photocatalytic system into one with more industrial and practical applications foracid drainage purification.
机译:在低pH值下实现使用半导体光催化的酸引流的有效处理仍然是广泛的重金属离子和有机芳香族污染物的具有挑战性和必要的项目。在此,研究了可见光下六价铬和苯酚的协同光催化,以旨在记住环境修复和可持续发展。使用结构工程策略,具有外纳米晶体簇保护的典型CDS的异质结是不符合可见光驱动的光催化分解的有效和可回收能力,用于修复污染物在强酸性条件下。由于使结构能够的酸性稳定性,Cr(VI)和苯酚的同时修复可以在pH = 2.0-7.0的高效和可回收模式下进行。这项研究从根本上发展了一种具有更多工业和实际应用的代表性光催化系统,使得促进引流净化。

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