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Mechanisms of the removal of hexavalent chromium by biomaterials or biomaterial-based activated carbons

机译:生物材料或基于生物材料的活性炭去除六价铬的机理

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摘要

Three papers published during recent 2 years in Journal of Hazardous Materials made a mistake in analyzing chromium species in aqueous solution, resulting in incorrect elucidation of Cr(Ⅵ) biosorption; the Cr(Ⅵ) was removed from aqueous solution systems by 'anionic adsorption'. However, it has been proved that Cr(Ⅵ) is easily reduced to Cr(Ⅲ) by contact with organic materials under acidic conditions because of its high redox potential value (above +1.3 V at standard condition). Therefore, it is strongly possible that the mechanism of Cr(Ⅵ) removal by biomaterials or biomaterial-based activated carbons is not "anionic adsorption" but "adsorption-coupled reduction". Thus, for researches of Cr(Ⅵ) biosorption, researchers have to analyze not only Cr(Ⅵ) but also total Cr in aqueous solution and to check the oxidation state of chromium bound on the biomaterials or activated carbons.
机译:最近两年发表在《有害物质杂志》上的三篇论文在分析水溶液中的铬物种时犯了一个错误,导致对Cr(Ⅵ)生物吸附的解释不正确。 Cr(Ⅵ)通过“阴离子吸附”法从水溶液体系中去除。然而,已经证明,由于在酸性条件下与有机材料接触,Cr(Ⅵ)易于还原为Cr(Ⅲ),因为其氧化还原电位值很高(标准条件下高于+1.3 V)。因此,通过生物材料或基于生物材料的活性炭去除Cr(Ⅵ)的机理很可能不是“阴离子吸附”而是“吸附耦合还原”。因此,为了研究Cr(Ⅵ)的生物吸附,研究人员不仅要分析水溶液中的Cr(Ⅵ),还要分析水中的总Cr,并检查结合在生物材料或活性炭上的铬的氧化态。

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