首页> 外文期刊>Water, Air, & Soil Pollution >Removal of Chromium, Copper, and Nickel from an Electroplating Effluent Using a Flocculent Brewer’s Yeast Strain of Saccharomyces cerevisiae
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Removal of Chromium, Copper, and Nickel from an Electroplating Effluent Using a Flocculent Brewer’s Yeast Strain of Saccharomyces cerevisiae

机译:使用絮凝啤酒酵母酵母菌去除电镀废水中的铬,铜和镍

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摘要

The release of heavy metals in aquatic systems due to the discharge of industrial wastewaters is a matter of environmental concern. Heat-inactivated cells of a flocculent strain of Saccharomyces cerevisiae were used in the bioremediation, in a batch mode, of a real electroplating effluent containing Cu, Ni, and Cr. In this approach, no previous reduction of Cr(VI) to Cr(III) was required. Cr(VI) was selectively removed (98%) by yeast biomass at pH 2.3. At this pH, Cr(VI) is mainly in the form of HCrO4− and yeast surface is surrounded by H+ ions, which enhance the Cr(VI) interaction with biomass binding sites by electrostatic forces. Subsequently, pH of the effluent was raised up to 6.0; this pH maximizes the efficiency of cations removal since at this pH the main binding groups of yeast cells are totally or partially deprotonated. The passage of effluent through a series of sequential batches, at pH 6.0, allowed, after the third batch, the removal of Cu(II), Ni (II), Cr total, and Cr(VI) in the effluent to values below the legal limit of discharge. The strategy proposed in the present work can be used in plants for the treatment of heavy metals rich industrial effluents containing simultaneously Cr(VI) and Cr(III).
机译:由于排放工业废水而在水生系统中释放重金属是环境问题。酿酒酵母絮凝菌株的热灭活细胞以分批方式用于含铜,镍和铬的真实电镀废水的生物修复。用这种方法,不需要先前将Cr(VI)还原为Cr(III)。在pH 2.3下,酵母生物量选择性去除了Cr(VI)(98%)。在此pH下,Cr(VI)主要以HCrO 4 -的形式存在,并且酵母表面被H + 离子包围,从而增强了Cr(VI)通过静电力与生物质结合位点相互作用。随后,将废水的pH值提高到6.0;该pH使阳离子去除效率最大化,因为在此pH下酵母细胞的主要结合基团全部或部分去质子化。废水在pH 6.0时经过一系列连续批次的通过,第三批次之后允许将废水中的Cu(II),Ni(II),Cr总量和Cr(VI)除去至低于法定排放限额。本工作中提出的策略可用于处理同时含有Cr(VI)和Cr(III)的富含重金属的工业废水的工厂。

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