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Screening of zero valent mono/bimetallic catalysts and recommendation of Raney Ni (without reducing agent) for dechlorination of 4-chlorophenol

机译:筛选零价单体/双金属催化剂和Raney Ni(无还原剂)的推荐,用于4-氯酚的脱氯

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摘要

Chlorophenol (CP) is considered as environmentally hazardous material due to its acute toxicity, persistent nature and strong bioaccumulation. The dechlorination of 4-CP was investigated by using various catalysts such as bimetallic (Fe-0/Cu-0, Al-0/Fe-0), Pd/C, Raney Ni and Fe-0 at room temperature. Among the catalysts studied, Raney Ni proved to be very economical and efficient catalyst that worked without the use of an external reducing agent. The dechlorination of 4-CP by Raney Ni was therefore further explored. Complete dechlorination of 4-CP (30 mg L-1) was achieved in 6 hat an optimum Raney Ni catalyst loading of 3 g L-1. The effect of triethylamine (TEA) and tripropylamine (TPA) was also investigated and it was observed that 100% dechlorination is possible in presence of 45 mg L-1 of TEA. The kinetics of dechlorination of 4-CP was investigated and found to be first order with a rate constant of 0.017 min(-1) at 50 degrees C, and it enhances to 0.109 min(-1) with addition of TEA. In the absence of a reducing agent, acidic to neutral pH favors dechlorination of 4-CP. The final product of dechlorination was estimated to be phenol by performing HPLC, LCMS and NMR analysis. Based on the results, a probable dechlorination mechanism of 4-CP is also proposed. It can be concluded that the catalytic hydrodechlorination is an effective and economical technique for dechlorination of 4-CP and it has a potential for the dechlorination of other toxic derivatives of chlorinated aromatics. (C) 2020 Elsevier Ltd. All rights reserved.
机译:由于其急性毒性,持续性和强烈的生物累积,氯酚(CP)被认为是环境危害的材料。通过在室温下使用各种催化剂如双金属(Fe-0 / Cu-0,Al-0 / Fe-0),Pd / C,Raney Ni和Fe-0,研究了4-CP的脱氯。在所研究的催化剂中,Raney Ni被证明是非常经济高效的催化剂,其在不使用外部还原剂的情况下工作。因此,还探讨了Raney Ni的4-CP的脱氯。在6颗帽子中实现了4-CP(30mg L-1)的完全脱氯,最佳Raney Ni催化剂负载量为3g L-1。还研究了三乙胺(茶)和三丙胺(TPA)的作用,观察到,在45mg L-1的茶中存在100%脱氯。研究了4-CP脱氯的动力学,发现是在50℃下的0.017分钟(-1)的第一阶,并加入茶叶0.109分钟(-1)。在没有还原剂的情况下,酸性与中性pH有利于4-CP的脱氯。通过进行HPLC,LCMS和NMR分析估计脱氯的最终产物是苯酚。基于结果,还提出了4-CP的可能脱氯机制。可以得出结论,催化水解物是4-CP的脱氯化的有效且经济的技术,它具有氯化芳烃的其他有毒衍生物的脱氯。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Chemosphere》 |2020年第7期|126298.1-126298.9|共9页
  • 作者单位

    Minist Def Dept Appl Chem Energy & Environm Lab Def Inst Adv Technol DU Pune 411025 Maharashtra India;

    CSIR Natl Chem Lab Chem Engn & Proc Dev Div Pune Maharashtra India|CSIR NCL Acad Sci & Innovat Res AcSIR Pune Maharashtra India;

    CSIR Natl Chem Lab Chem Engn & Proc Dev Div Pune Maharashtra India;

    CSIR Natl Chem Lab Chem Engn & Proc Dev Div Pune Maharashtra India;

    Minist Def Dept Appl Chem Energy & Environm Lab Def Inst Adv Technol DU Pune 411025 Maharashtra India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    4-Chlorophenol; Raney Ni; Hydrodechlorination; Without reducing agent; Cl- scavenger; Recycling of catalyst;

    机译:4-氯苯酚;Raney Ni;氢化氢;没有还原剂;Cl-清除剂;催化剂的再循环;

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