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首页> 外文期刊>Environmental research >Experimental studies on water matrix and influence of textile effluents on photocatalytic degradation of organic wastewater using Fe-TiO_2 nanotubes: Towards commercial application
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Experimental studies on water matrix and influence of textile effluents on photocatalytic degradation of organic wastewater using Fe-TiO_2 nanotubes: Towards commercial application

机译:Fe-TiO_2纳米管使用Fe-TiO_2纳米管纺织品污水对有机废水光催化降解的实验研究:对商业应用

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摘要

The application of photocatalysis for the effective removal of textile dyes is dependent on various parameters related with both water quality and different chemicals discharge during the dying process. Because the oxidation rates of the particular mixtures mainly influenced by the elements of the water matrix. These elements comprised of organic, inorganic salts, heavy metals, and ions. The impact of water matrices (Tap water, DI water, seawater, surface water, and ultra-pure water) on the Congo red decolorization, total organic carbon, and chemical oxygen demand removal efficacy has been assessed using Fe-TiO_2 nanotubes as a photocatalyst. The photocatalytic degradation rate decreased in unclean water due to the interferences of dissolved organics and minerals. However, all the environmental water matrices depict the significant decrease in turbidity and conductivity after treating with photocatalytic process. The photoactivity and capacity for decantation are the two crucial elements that have an impact on the "practical efficiency" of photocatalysts. Moreover, the textile wastewater contains a large quantity of dyes mixed with number of detrimental chemicals and other effluents discharged into the water which consequently pollute ecosystem and cause serious risks to human health. For environmental applications, we investigated individually the impact of various harmful chemicals commonly discharged from each step of textile wet processing which can have inhibiting or promoting effect on the azo dye photocatalytic degradation.
机译:光催化用于有效去除纺织品染料的应用依赖于在染色过程中与水质和不同化学品排出相关的各种参数。因为特定混合物的氧化速率主要受水基质元素的影响。这些元素由有机,无机盐,重金属和离子组成。使用Fe-TiO_2纳米管作为光催化剂评估了水基质(自来水,二水,海水,海水,表面水和超纯水)对刚果红脱色,总有机碳和化学氧需求去除疗效进行评估。由于溶解的有机物和矿物质的干扰,在不味道的水中,光催化降解速率降低。然而,所有环境水矩阵都描绘了光催化过程处理后浊度和电导率的显着降低。倾析的光度和容量是两个关键因素,对光催化剂的“实用效率”产生影响。此外,纺织废水含有大量的染料,混合了与不损害的化学品的数量和排放到水中的其他污水,因此污染生态系统并对人类健康引起严重风险。对于环境应用,我们调查了各种有害化学品通常从纺织湿法处理中排出的各种有害化学物质的影响,这可能对偶氮染料光催化降解产生抑制或促进影响。

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  • 来源
    《Environmental research 》 |2021年第2期| 111120.1-111120.10| 共10页
  • 作者单位

    Department of Civil and Environmental Engineering Hanyang University 222-Wangsimni-ro Seongdong-gu Seoul 04763 South Korea;

    Department of Civil and Environmental Engineering Hanyang University 222-Wangsimni-ro Seongdong-gu Seoul 04763 South Korea;

    Department of Civil and Environmental Engineering Hanyang University 222-Wangsimni-ro Seongdong-gu Seoul 04763 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Water matrix effect; Photocatalytic degradation; Textile wastewater; Fe-TiO_2 nanotubes;

    机译:水基效;光催化降解;纺织废水;Fe-TiO_2纳米管;

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