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光电化学激活过硫酸盐降解三氯乙烯。

Degradation of trichloroethylene by photoelectrochemically activated persulfate.

机构信息

Institute of Environmental Engineering, National Sun Yat-sen University, Kaoshiung, 804, Taiwan.

Department of Environmental Science and Engineering, Tunghai University, Taichung, 40704, Taiwan.

出版信息

Chemosphere. 2020 Sep;254:126796. doi: 10.1016/j.chemosphere.2020.126796. Epub 2020 Apr 17.

Abstract

Chlorine-containing organic compounds were discharged informally as a result of untreated industrial wastewater, which caused groundwater pollution. In this study, titanium dioxide nanotube arrays (TNAs) were modified with copper oxide to photoelectrochemical (PEC) active persulfate to degrade trichloroethylene (TCE). The SEM results show copper nano-particles with a cubic shape were successfully deposited on the surface of TNAs. The results of UV-vis analysis indicate the absorption wavelengths red-shift to 550-600 nm for better light utilization. CuO/TNAs were dominated by the anatase phase after sintering at 450 °C with significant visible light response. The chemical contents for the surface of CuO/TNAs are 23.7, 53.4, 18.4 and 4.4% for C, O, Ti and Cu, respectively. The photocurrent of CuO/TNAs is 1.89 times higher than that of TNAs under 100 W Hg-lamp illuminations. This demonstrates the efficiency of light utilization of TNAs was improved by the modification with copper nanoparticles. The degradation rate of TCE in the anodic chamber is more effective than that in the cathodic chamber because of the synergistic effect of hydroxyl and sulfate radicals. The mechanism of TCE degradation via persulfate in the PEC system was proposed and discussed in detail.

摘要

含氯有机化合物未经处理的工业废水被随意排放,导致地下水受到污染。在本研究中,采用氧化铜对二氧化钛纳米管阵列(TNA)进行改性,将过硫酸盐转化为光电化学(PEC)活性物质,以降解三氯乙烯(TCE)。SEM 结果表明,成功地在 TNA 表面沉积了具有立方形状的铜纳米颗粒。UV-vis 分析结果表明,吸收波长红移至 550-600nm,以更好地利用光。在 450°C 下烧结后,CuO/TNAs 主要为锐钛矿相,具有显著的可见光响应。CuO/TNAs 表面的化学含量分别为 C、O、Ti 和 Cu 的 23.7%、53.4%、18.4%和 4.4%。在 100W 汞灯下照射下,CuO/TNAs 的光电流比 TNAs 高 1.89 倍。这表明铜纳米粒子的修饰提高了 TNAs 的光利用效率。由于羟基和硫酸根自由基的协同作用,阳极室内 TCE 的降解速率比阴极室内更有效。提出并详细讨论了 PEC 体系中过硫酸盐降解 TCE 的机理。

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