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Simultaneous photoreductive removal of copper (II) and selenium (IV) under visible light over spherical binary oxide photocatalyst

机译:球形二元氧化物光催化剂在可见光下同时光还原去除铜(II)和硒(IV)

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摘要

Waste water of copper mines and copper processing plant contains both copper and selenium ions with other contaminants. In this paper simultaneous photoreductive removal of copper (II) and selenium (IV) is studied for the first time using spherical binary oxide photocatalysts under visible light. All the synthesized materials are found to be mesoporous in nature with reasonably high surface area. Among a range of hole scavengers, only EDTA (ethylene diamine tetraacetic acid) and formic acid are found to be the most active for the reduction reaction. A comparative study is carried out using both the hole scavengers varying reaction time, concentration, pH etc. For a single contaminant, EDTA is found to be the best for Cu(II) reduction whereas formic acid is the best for Se(IV) reduction. In a mixed solution both EDTA and formic acid perform very well under visible light irradiation. Highest photocatalytic reduction in a mixed solution is observed at pH 3. Among all the synthesized materials, TiZr-10 performs as the best photocatalyst for both Cu(II) and Se(IV) reduction. However under UV light, Degussa P25 performs slightly better than TiZr-10. Present study shows that 100ppm of mixed solution can be removed under visible light in 40min of reaction using TiZr-10 as catalyst. Photodeposited material is found to be copper selenide rather than pure copper and selenium metal. This indicates that the waste water containing copper and selenium ions can be efficiently treated under visible or solar light.
机译:铜矿山和铜加工厂的废水中含有铜和硒离子以及其他污染物。本文首次在可见光下使用球形二元氧化物光催化剂研究了同时光还原去除铜(II)和硒(IV)的方法。发现所有合成材料本质上都是介孔的,具有相当高的表面积。在一系列的空穴清除剂中,仅EDTA(乙二胺四乙酸)和甲酸被发现对还原反应最具活性。使用两种空穴清除剂改变反应时间,浓度,pH等进行了比较研究。对于单一污染物,发现EDTA最适合还原Cu(II),而甲酸最适合还原Se(IV) 。在混合溶液中,EDTA和甲酸在可见光照射下均表现出色。在pH值为3的情况下,在混合溶液中观察到最高的光催化还原作用。在所有合成材料中,TiZr-10都是还原Cu(II)和Se(IV)的最佳光催化剂。但是,在紫外光下,Degussa P25的性能略优于TiZr-10。目前的研究表明,使用TiZr-10作为催化剂,可以在40分钟的可见光下去除100ppm的混合溶液。发现光沉积材料是硒化铜,而不是纯铜和硒金属。这表明可以在可见光或太阳光下有效处理含铜和硒离子的废水。

著录项

  • 来源
    《Journal of Hazardous Materials》 |2011年第1期|p.360-366|共7页
  • 作者单位

    ACC Division, National Metallurgical Laboratory, CSIR (Council of Scientific & Industrial Research), Jamshedpur-831007, India;

    ACC Division, National Metallurgical Laboratory, CSIR (Council of Scientific & Industrial Research), Jamshedpur-831007, India;

    ACC Division, National Metallurgical Laboratory, CSIR (Council of Scientific & Industrial Research), Jamshedpur-831007, 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);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    copper (II); selenium (IV); photoreduction; EDTA; formic acid; visible light;

    机译:铜(II);硒(IV);光还原EDTA;甲酸可见光;
  • 入库时间 2022-08-17 13:23:36

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