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首页> 外文期刊>Polish Journal of Environmental Studies >Toxicity Screening after Electrochemical Degradation of Reactive Textile Dyes
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Toxicity Screening after Electrochemical Degradation of Reactive Textile Dyes

机译:活性纺织染料电化学降解后的毒性筛选

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摘要

The application of various electrodes for in situ degradation of Reactive Yellow 125 (RY125) and Reactive Green 15 (RG15) dyes, as well as ecotoxicity screening test of their degradation products were studied in this paper. The degradation process was performed in a two-electrode cylindrical cell, with Fisher platinum electrode as anode and Pd, Zr, or C electrodes as cathode; in 0.1 M Na_2SO_4 as supporting electrolyte. The optimal conditions (voltage and pH value) for degradation were determined in a platinum-palladium (Pt-Pd) model system for 200 mg/L of both reactive dyes. Then the electrolysis with other electrodes was conducted under the same conditions. Decolorization was monitored spectrofotometrically (UV-Vis) and the degradation efficiency was confirmed by HPLC technique with a DAD detector. Differences in degradation efficiency were observed between these three electrochemical systems (Pt-Pd, Pt-Zr, and Pt-C). The Pt-Pd system was the most efficient for the degradation of both reactive dyes. Achieved decolorization percentage for RG15 and RY125 were 98% and 97%, respectively. The ecotoxicity assessment of degradation products was performed using Artemia salina. Toxicity data were compared by Kruskal-Wallis one-way analysis and pair-wise group comparisons with Mann-Whitney U tests. Statistically significant differences (p<0.05) in mortality (%) for Pt-Pd and Pt-Zr systems were determined between treated and untreated dye solutions of RG15. System Pt-C had no detectable significance in treatment of solutions of both dyes.
机译:本文研究了各种电极在活性黄125(RY125)和活性绿15(RG15)染料原位降解中的应用以及降解产物的生态毒性筛选试验。降解过程是在两电极圆柱形电池中进行的,以Fisher铂电极为阳极,Pd,Zr或C电极为阴极。在0.1 M Na_2SO_4中作为支持电解质。在200 mg / L的两种活性染料的铂-钯(Pt-Pd)模型系统中,确定了降解的最佳条件(电压和pH值)。然后在相同条件下用其他电极进行电解。分光光度法(UV-Vis)监测脱色,并通过HPLC技术和DAD检测器确认降解效率。在这三个电化学系统(Pt-Pd,Pt-Zr和Pt-C)之间观察到了降解效率的差异。 Pt-Pd系统对于两种活性染料的降解都是最有效的。 RG15和RY125达到的脱色率分别为98%和97%。降解产物的生态毒性评估使用卤虫盐卤进行。毒性数据通过Kruskal-Wallis单向分析和成对分组比较与Mann-Whitney U检验进行比较。在处理过的和未处理过的RG15染料溶液之间,Pt-Pd和Pt-Zr系统的死亡率(%)的统计学差异(p <0.05)均得到确定。 Pt-C体系在两种染料溶液的处理中均无可检测的意义。

著录项

  • 来源
    《Polish Journal of Environmental Studies》 |2014年第6期|2103-2109|共7页
  • 作者单位

    Center of Chemistry, Institute of Chemistry, Technology and Metallurgy, University of Belgrade,Studentski trg 12-16,11000 Belgrade, Serbia;

    Innovation Center, Faculty of Chemistry, University of Belgrade,P.O. Box 51,11058 Belgrade 118, Serbia;

    Innovation Center, Faculty of Chemistry, University of Belgrade,P.O. Box 51,11058 Belgrade 118, Serbia;

    Faculty of Chemistry, University of Belgrade,P.O. Box 51, 11058 Belgrade 118, Serbia;

    Faculty of Chemistry, University of Belgrade,P.O. Box 51, 11058 Belgrade 118, Serbia;

    Faculty of Chemistry, University of Belgrade,P.O. Box 51, 11058 Belgrade 118, Serbia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    electrochemical degradation; azo dyes; ecotoxicity;

    机译:电化学降解偶氮染料生态毒性;

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