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Effect of low-purity Fenton reagents on toxicity of textile dyeing effluent to Daphnia magna

机译:低纯度芬顿试剂对Daphnia Magna纺织染色流出物毒性的影响

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This study aimed to identify the source of toxicity in textile dyeing effluent collected from February to July 2016, using Daphniamagna as a test organism. Toxicity identification evaluation (TIE) procedures were used to identify the toxicants in textile dyeing effluent, and Jar testing to simulate the Fenton process was conducted to identify the source of toxicants. Textile dyeing effluent was acutely toxic to D. magna [from 1.5 to 9.7 toxic units (TU)] during the study period. TIE results showed that Zn derived from the Fenton process was a key toxicant in textile dyeing effluent. Additionally, Jar testing revealed that low-purity Fenton reagents (FeCl2 and FeSO4), which contained large amounts of Zn (89 838 and 610 mg L-1, respectively), were the source of toxicity. Although we were unable to conclusively identify the residual toxicity (approx. 1.4 TU of 9.71 TU) attributable to unknown toxicants in textile dyeing effluent, the findings of this study suggest that careful operation of the Fenton treatment process could contribute to eliminating its unintended toxic effects on aquatic organisms.
机译:本研究旨在鉴定2016年2月至2016年2月至7月收集的纺织染色污染流出物的毒性来源,用Daphniamagna作为测试生物。毒性鉴定评估(TIE)程序用于鉴定纺织品染色流出物中的毒物,并进行了模拟FENTON工艺的罐测试以鉴定毒物源。在研究期间,纺织染色流出物对D. Magna [从1.5至9.7毒性单位(TU)]急性毒性。系列结果表明,Zn来自Fenton方法是纺织染色流出物中的关键毒物。另外,罐测试显示,低纯度芬顿试剂(FECL2和FESO4),其含有大量Zn(89 838和610mg L-1)是毒性的来源。虽然我们无法得出纺织染色污染毒品未知毒物的残留毒性(约1.4μA1911.1911.1.41Au),但本研究的结果表明Fenton治疗过程的仔细操作可能有助于消除其意外毒性效应关于水生生物。

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