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首页> 外文期刊>International journal of environmental analytical chemistry >Polyoxometallate photocatalysis for decontaminating the aquatic environment from organic and inorganic pollutants
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Polyoxometallate photocatalysis for decontaminating the aquatic environment from organic and inorganic pollutants

机译:多金属氧酸盐光催化从有机和无机污染物中净化水生环境

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摘要

Polyoxometallates (POMs), i.e. metal oxide clusters of mainly tungsten, are effective homogeneous photocatalysts for the mineralization of organic pollutants. ~·OH radicals formed by the reaction of the photo-excited POMs with H_2O appear to play a key role in the process. POMs are similar to TiO_2. In this article, the photocatalytic activity of POMs has been presented on several diversified organic pollutants of interest such as phenol, chlorophenols, chloroacetic acids, and pesticides to determine the feasibility of decontamination of aqueous solutions from these pollutants. The results show that aqueous solutions containing the target pollutants, upon photolysis in the presence of POMs, undergo effective degradation to CO_2, H_2O, and the corresponding inorganic anions. The intermediates identified give rise to complicated degradation mechanisms prior to mineralization. In addition, photolysis of an aqueous solution of metal ions in the presence of POMs and organic substrate leads to the oxidative degradation of the organic and the simultaneous reduction-precipitation of metals in elemental state. This process has been successful in the removal-recovery of a great variety of metal ions including either toxic metallic compounds (chromium and mercury) or valuable metals (such as copper, silver, gold, palladium, and platinum). Finally, the two pathways were combined into a simple one-pot process for the decontamination of aquatic environment from both organic pollutants and metal cations.
机译:多金属氧酸盐(POMs),即主要是钨的金属氧化物簇,是有效的均质光催化剂,用于有机污染物的矿化。由光激发的POM与H_2O反应形成的〜·OH自由基似乎在该过程中起关键作用。 POM类似于TiO_2。在本文中,已经介绍了POM的光催化活性对几种感兴趣的多种有机污染物(例如苯酚,氯酚,氯乙酸和农药)的影响,以确定从这些污染物中去除水溶液的可行性。结果表明,含有目标污染物的水溶液在POM存在下进行光解后,会有效降解为CO_2,H_2O和相应的无机阴离子。所确定的中间体在矿化之前会引起复杂的降解机理。此外,在POM和有机底物的存在下,金属离子水溶液的光解作用会导致有机物的氧化降解以及元素状态下金属的同时还原沉淀。该方法已成功地去除了多种金属离子,包括有毒金属化合物(铬和汞)或有价金属(如铜,银,金,钯和铂)。最后,将这两种途径合并为一个简单的一锅法,以从有机污染物和金属阳离子中净化水生环境。

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