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A sustained approach to environmental catalysis: Reutilization of chromium from wastewater

机译:一种持续的环境催化方法:废水中铬的再利用

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摘要

Wastewater pollution with heavy metals is an issue of great environmental concern. The future development of clean technologies for the treatment of wastewater loaded with heavy metals entails environment friendly and sustainable processes that may allow simultaneously the recovery of the metals and their reutilization as value-added catalysts to be used in environmental applications. This is the first review regarding the biorecovery of metals and their further reutilization as heterogeneous catalysts. In this regard, metallic residues that generally would be considered as a waste at the end of the treatment process can be reutilized and transformed into value-added catalysts to be used in environmental applications. This review is focused in two broad areas: the biorecovery of chromium by a combined biosorption system consisting of bacteria supported on zeolites, and the catalytic reutilization of the metal-loaded zeolites in the oxidation of organic compounds, both in gaseous and liquid phase. After an overview describing the main subjects in the field of heavy metals recovery, biosorption, zeolites and catalytic oxidation, in the following sections special emphasis will be given to the main results and findings regarding these clean technologies of biorecovery and reuse of metals in catalytic reactions of environmental concern.
机译:重金属对废水的污染是一个严重的环境问题。清洁技术的未来发展将用于处理重金属废水,这需要环境友好和可持续的工艺,这些工艺可以同时回收金属并将其作为增值催化剂用于环境应用。这是有关金属的生物回收及其作为非均相催化剂的进一步再利用的首次综述。在这方面,通常在处理过程结束时被视为废物的金属残留物可以重新利用并转化为增值催化剂,以用于环境应用。这项综述主要集中在两个方面:通过结合在沸石上的细菌组成的联合生物吸附系统对铬的生物回收,以及负载金属的沸石在气相和液相氧化有机化合物时的催化再利用。在概述了重金属回收,生物吸附,沸石和催化氧化领域的主要主题之后,在以下各节中,将特别强调有关这些生物回收和催化反应中金属再利用的清洁技术的主要结果和发现。对环境的关注。

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