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首页> 外文期刊>Archives of Environmental Contamination and Toxicology >Evaluation of Aquatic Toxicities of Chromium and Chromium-Containing Effluents in Reference to Chromium Electroplating Industries
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Evaluation of Aquatic Toxicities of Chromium and Chromium-Containing Effluents in Reference to Chromium Electroplating Industries

机译:参照铬电镀行业评估铬和含铬废水的水生毒性

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This study evaluated aquatic toxicities of chromium and chromium-containing laboratory samples representative of effluents from chromium electroplating industries, and compared the aquatic environmental risks of hexavalent and trivalent chromium electroplating operations. Trivalent chromium electroplating has emerged as an acceptable alternative to hazardous hexavalent chromium electroplating. This process substitution has reduced the human health impact in the workplace and minimized the production of hazardous sludge regulated under the Resource Conservation and Recovery Act (RCRA). The thrust behind this research was to investigate whether trivalent chromium electroplating operations have lower adverse impacts on standardized toxicity test organisms. Ceriodaphnia dubia and Pimephales promelas were used to investigate toxicities of trivalent chromium (Cr (III)), hexavalent chromium (Cr (VI)), and industrial effluents. In agreement with previous studies, Cr (III) was found to be less toxic than Cr (VI). Despite having several organic and inorganic constituents in the effluents obtained from trivalent chromium plating baths, they exhibited less adverse effects to C. dubia than effluents obtained from hexavalent chromium electroplating baths. Thus, transition from hexavalent to trivalent chromium electroplating processes may be justified. However, because of the presence of organic constituents such as formate, oxalate, and triethylene glycol in effluents, trivalent chromium electroplating operations may face additional regulatory requirements for removal of total organic carbon.
机译:这项研究评估了铬和代表铬电镀工业废水的含铬实验室样品的水生毒性,并比较了六价和三价铬电镀操作对水环境的危害。三价铬电镀已成为危险的六价铬电镀的可接受替代方法。这种工艺的替代降低了工作场所对人类健康的影响,并最大限度地减少了《资源保护和回收法》(RCRA)规定的有害污泥的产生。这项研究的目的是研究三价铬电镀操作是否对标准化毒性测试生物产生较低的不利影响。胫骨氧化铈和Pimephales蛋白酶用于研究三价铬(Cr(III)),六价铬(Cr(VI))和工业废水的毒性。与先前的研究一致,发现六价铬的毒性低于六价铬。尽管在三价铬电镀液中得到的废水中有几种有机和无机成分,但它们对杜氏梭菌的不良影响要比从六价铬电镀液中得到的废水小。因此,可以证明从六价铬电镀工艺过渡到三价铬电镀工艺是合理的。但是,由于废水中存在有机成分,例如甲酸盐,草酸盐和三甘醇,三价铬电镀操作可能面临去除总有机碳的其他法规要求。

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    A. Baral;

    Environmental Science Program Arkansas State University State University;

    Field Services Division Mississippi Department of Environmental Quality;

    Environmental Science Program Arkansas State University State University;

    Environmental Science Program Arkansas State University State University;

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