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首页> 外文期刊>Journal of nanomaterials >Study of Modern Nano Enhanced Techniques for Removal of Dyes and Metals
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Study of Modern Nano Enhanced Techniques for Removal of Dyes and Metals

机译:现代纳米增强技术去除染料和金属的研究

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摘要

Industrial effluent often contains the significant amount of hexavalent chromium and synthetic dyes. The discharge of wastewater without proper treatment into water streams consequently enters the soil and disturbs the aquatic and terrestrial life. A range of wastewater treatment technologies have been proposed which can efficiently reduce both Cr(VI) and azo dyes simultaneously to less toxic form such as biodegradation, biosorption, adsorption, bioaccumulation, and nanotechnology. Rate of simultaneous reduction of Cr(VI) and azo dyes can be enhanced by combining different treatment techniques. Utilization of synergistic treatment is receiving much attention due to its enhanced efficiency to remove Cr(VI) and azo dye simultaneously. This review evaluates the removal methods for simultaneous removal of Cr(VI) and azo dyes by nanomicrobiology, surface engineered nanoparticles, and nanophotocatalyst. Sorption mechanism of biochar for heavy metals and organic contaminants is also discussed. Potential microbial strains capable of simultaneous removal of Cr(VI) and azo dyes have been summarized in some details as well.
机译:工业废水通常包含大量的六价铬和合成染料。因此,未经适当处理就将废水排放到水流中会进入土壤并扰乱水生和陆地生命。已经提出了一系列废水处理技术,这些技术可以有效地将Cr(VI)和偶氮染料同时还原为毒性较低的形式,例如生物降解,生物吸附,吸附,生物富集和纳米技术。 Cr(VI)和偶氮染料的同时还原速率可以通过结合不同的处理技术来提高。协同处理的使用由于其同时去除Cr(VI)和偶氮染料的效率提高而备受关注。这篇综述评估了通过纳米微生物学,表面工程纳米颗粒和纳米光催化剂同时去除Cr(VI)和偶氮染料的去除方法。还讨论了生物炭对重金属和有机污染物的吸附机理。能够同时去除Cr(VI)和偶氮染料的潜在微生物菌株也已在一些细节中进行了总结。

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