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Chemical Degradation and Decolorization of Reactive Black B With an Inorganic Oxidant in Acidic Medium

机译:活性黑B在酸性介质中与无机氧化剂的化学降解和脱色

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摘要

Due to the wide applicationes of the Reactive Black B (RBB) in textile industries, it is largely present within the aqueous environment which is a serious environmental threat. Previous studies were unsuccessful to completely remove the color of RBB from the contaminated environment. In this work, the decolorization of aqueous solutions with RBB was performed by Potassium bromate. It was found to be a promising oxidizing agent for chemical degradation of organic pollutant. The decolorization and degradation of Reactive Black B by potassium bromate in an aqueous acidic medium was carried out at 591 nm spectrophotometrically at laboratory scale. The reaction was studied under pseudo order conditions having concentration of BrO3 in excess than dye. Under constant conditions, the reaction was found to be first order with respect to both oxidant and reductant. The kinetic salt effect of added salt for the determination of reactive species in the rate-determining step showed that the rate of reaction is directly related to the increasing concentration of salt, suggesting that two same charged species are involved in the rate-determining step. Activation parameters were also calculated for the reaction. The highest decolorization percentage of RBB (99) was obtained showing almost complete removal of color of dye from aqueous medium. The proposed degradation of RBB with bromate was confirmed by qualitative and analytical tests (TDS, EC, UV-Visible and FTIR spectroscopy).
机译:由于广泛的活性验证黑B(非本征基极电阻)在纺织行业,它是主要出现在水环境中这是一个严重的环境威胁。研究成功完全删除从受污染的非本征基极电阻的颜色环境。与非本征基极电阻是由水解决方案溴酸钾。氧化剂的化学降解有机污染物。降解活性黑B的钾溴酸盐在酸性水溶液中进行在591 nm spectrophotometrically实验室的规模。伪秩序条件下的浓度比染料BrO3超过。条件下,反应被发现对氧化剂和还原剂。动态添加盐的盐效应确定的活性物种速率决定步骤显示的速度反应直接相关的增加盐的浓度,表明两个相同指控物种参与速率决定步骤。也为反应计算。脱色非本征基极电阻的比例(99%)获得显示几乎完全删除的颜色水介质的染料。非本征基极电阻退化证实了溴酸盐定性和分析测试(TDS、EC、紫外可见和红外光谱)。

著录项

  • 来源
    《Chemistry Select》 |2022年第40期|共7页
  • 作者单位

    Department of Chemistry University of Karachi, Karachi, 75270, Pakistan;

    Department of Chemistry Jinnah University for Women, Karachi, Pakistan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 化学;
  • 关键词

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