首页> 外文期刊>Chemosphere >Investigation of the efficiency of BiOI/BiOCl composite photocatalysts using UV, cool and warm white LED light sources - Photon efficiency, toxicity, reusability, matrix effect, and energy consumption
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Investigation of the efficiency of BiOI/BiOCl composite photocatalysts using UV, cool and warm white LED light sources - Photon efficiency, toxicity, reusability, matrix effect, and energy consumption

机译:使用UV,凉爽暖白光光源 - 光子效率,毒性,可重用,基质效应和能量消耗研究BioI / BioCl复合光催化剂效率的研究

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摘要

BiOI, BiOCl, and their composites (BiOI:BiOCl) with molar ratios from 95:5 to 5:95 were synthesized and tested in the transformation of methyl orange (MO) and sulfamethoxypyridazine (SMP) antibiotic, using three various LED light sources: UV LEDs (398 nm), cool and warm white LEDs (400-700 nm). The 80:20 BiOI:BiOCl photocatalyst showed the best adsorption capacity for MO and enhanced activity compared to BiOI and BiOCl. The apparent quantum yield (Phi(app)) of the MO and SMP transformation for cool and warm white light was slightly lower than for 398 nm UV radiation. The effect of methanol and 1,4-benzoquinone proved that the transformation is initiated mainly via direct charge transfer, resulting in the demethylation of MO and SO2 extrusion from SMP. The change of photocatalytic efficiency was followed during three cycles. After the first one, the transformation rates decreased, but there was no significant difference between the second and third cycles. The decreased efficiency is most probably caused by the intermediates, whose continuous accumulation was observed during the cycles. Ecotoxicity measurements confirmed that no toxic substances were leached from the catalyst, but the transformation of both MO and SMP results in toxic intermediates. Using 80:20 BiOI:BiOCl and LED light source, the energy requirement of the removal is about half of the value determined using TiO2 and a mercury vapor lamp. The effect of some components of wastewater (Cl-, HCO3- and humic acids), pH, and two matrices on the composite photocatalysts' efficiency and stability were also investigated. (C) 2021 The Authors. Published by Elsevier Ltd.
机译:在甲基橙(Mo)和磺胺甲氧基吡啶(SMP)抗生素的转化中合成并测试了从95:5至5:95的摩尔比的Bio,BioCl及其复合材料(BioI:BioCl),并在甲基橙(Mo)和磺胺甲氧基质(SMP)抗生素的转化中进行了测试: UV LED(398 nm),凉爽和温暖的白色LED(400-700 nm)。 80:20 BioI:Biocl光催化剂显示出与生物和BioCl相比的Mo和增强活性的最佳吸附能力。用于冷热白光的MO和SMP转化的表观量子产率(PHI(APP))略低于398nm紫外线辐射。甲醇和1,4-苯并醌的效果证明了转化主要通过直接电荷转移开始,导致SMP的MO和SO2挤出的去甲基化。在三个循环中遵循光催化效率的变化。在第一个之后,转化率下降,但第二个和第三个循环之间没有显着差异。降低效率最小可能是由中间体引起的,其在循环期间观察到的连续积累。生态毒性测量证实,没有从催化剂中浸出有毒物质,但MO和SMP的转化导致有毒中间体。使用80:20 BioI:BioCl和LED光源,去除的能量要求是使用TiO 2和汞蒸汽灯测定的值的大约一半。还研究了一些废水(CL-,HCO3-和腐殖酸),pH和两种基质对复合光催化剂效率和稳定性的影响的影响。 (c)2021作者。 elsevier有限公司出版

著录项

  • 来源
    《Chemosphere》 |2021年第1期|130636.1-130636.11|共11页
  • 作者单位

    Univ Szeged Dept Inorgan & Analyt Chem Dom Ter 7 H-6720 Szeged Hungary;

    Univ Szeged Dept Appl & Environm Chem Rerrich Bela Ter 1 H-6720 Szeged Hungary|Univ Miskolc Inst Phys Met Met Forming & Nanotechnol HU-3515 Miskolc Egyetemvaros Hungary;

    Univ Szeged Dept Appl & Environm Chem Rerrich Bela Ter 1 H-6720 Szeged Hungary;

    Univ Szeged Dept Inorgan & Analyt Chem Dom Ter 7 H-6720 Szeged Hungary;

  • 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

    BiOX; Photocatalysis; Visible light; Quantum yield;

    机译:Biox;光催化;可见光;量子产量;

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