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Potentiality of Fe-Ni Nanocomposites Towards Environmental Abetment of Magenta Dye

机译:Fe-Ni纳米复合材料对品红色染料环境诱变的潜力

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摘要

The degradation of a basic magenta (BM) from aqueous streams is explored to ascertain the role of dissolve oxygen using Fe-Ni bimetallic nanocomposites as catalyst. XRD analysis of Fe-Ni bimetallic nanocomposites prepared with mont-morillonite (MMT) clay suggested its intercalation with Fe-Ni bimetallic nanoparticles whereas TEM images indicated the spherical nature with 20-40 nm. Batch experiments containing 100 mg L~(-1) dye solution and 1 g L~(-1) catalyst exhibited complete decolorization of BM within 10 min following first order reaction kinetics. Amongst the nanocomposites, 10% loaded and 50% in situ compositions possess better activity with enhanced degradation capacity below pH 4 because of generation of reactive H species. LC-MS analysis of decolorized solution revealed the formation of both reductive and oxidative metabolites with prominence of N-demethylated species mainly due to both FT ions and 'OH radicals. Moreover, when the deaerated solution of BM (N_2 purged dye solution) is subjected for catalytic treatment, only 17% decolorization is observed that further vouch for effectiveness of dissolved oxygen on the degradation process. To ascertain this hypothesis, sodium azide, a selective quencher for singlet oxygen, is added to the dye solution and the supernatant thus obtained is subjected for LC-MS analysis. This study clearly establishes the fact that reactive oxygenated species (ROS) indeed influence the course of degradation for organic pollutants and this technology may be regarded as aerobic degradation process mediated by zerovalent metal based nanocomposites as efficient catalyst.
机译:探索了从水流中降解碱性品红(BM),以确定使用Fe-Ni双金属纳米复合材料作为催化剂溶解氧的作用。用蒙脱石(MMT)粘土制备的Fe-Ni双金属纳米复合材料的XRD分析表明,其与Fe-Ni双金属纳米颗粒插层,而TEM图像显示了20-40 nm的球形性质。包含100 mg L〜(-1)染料溶液和1 g L〜(-1)催化剂的分批实验显示,一级反应动力学后10分钟内BM完全脱色。在纳米复合材料中,由于产生反应性H物种,10%的负载量和50%的原位组成具有更好的活性,并在pH低于4时具有增强的降解能力。 LC-MS对脱色溶液的分析表明,主要由于FT离子和'OH自由基,形成了还原性和氧化性代谢物,并突出了N-去甲基化物质。而且,当将BM的脱气溶液(N_2净化的染料溶液)进行催化处理时,仅观察到17%的脱色,这进一步证明了溶解氧在降解过程中的有效性。为了确定该假设,将叠氮化钠(一种用于单线态氧的选择性淬灭剂)添加到染料溶液中,并将由此获得的上清液进行LC-MS分析。这项研究清楚地确定了一个事实,即反应性氧化物质(ROS)确实会影响有机污染物的降解过程,因此该技术可被视为由零价金属基纳米复合材料作为有效催化剂介导的好氧降解过程。

著录项

  • 来源
    《Environmental progress》 |2013年第3期|615-623|共9页
  • 作者单位

    Nanoscience Group, Department of Chemistry, Post-graduate and Research Centre, MES Abasaheb Garware College, Karve Road, Pune-411004, India;

    Nanoscience Group, Department of Chemistry, Post-graduate and Research Centre, MES Abasaheb Garware College, Karve Road, Pune-411004, India;

    Nanoscience Group, Department of Chemistry, Post-graduate and Research Centre, MES Abasaheb Garware College, Karve Road, Pune-411004, India;

    Nanoscience Group, Department of Chemistry, Post-graduate and Research Centre, MES Abasaheb Garware College, Karve Road, Pune-411004, India;

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

    Fe-Ni nanocomposite; basic magenta; bimetallic catalyst; reactive oxygen species (ROS); degradation pathway;

    机译:Fe-Ni纳米复合材料;基本品红色;双金属催化剂活性氧(ROS);降解途径;
  • 入库时间 2022-08-17 13:28:33

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