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首页> 外文期刊>Ecotoxicology and Environmental Safety >Enhanced visible photocatalytic activity of cotton ball like nano structured Cu doped ZnO for the degradation of organic pollutant
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Enhanced visible photocatalytic activity of cotton ball like nano structured Cu doped ZnO for the degradation of organic pollutant

机译:纳米球形铜掺杂ZnO对棉球的可见光催化降解有机污染物的活性增强

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Stringent Environmental standards followed worldwide led to the emergence of advanced oxidation process for the removal of toxic contaminants from water and wastewater. Among all semiconductor photocatalysts have great potential in the degradation of organic and inorganic pollutants into lesser harmful products under visible light irradiations. The present research work describes the synthesis of Cu doped ZnO (CuDZ) via a co-precipitation method to attain high crystallized powder confirmed by XRD analysis. The FE-SEM images showed that the CuDZ has cotton ball like morphology with a uniform size ranged from 25 to 40 nm. TEM, FT-IR and UV-DRS studies of the synthesized CuDZ are also discussed in detail. The photocatalytic activity of the as prepared CuDZ catalyst was tested for the degradation of Direct Blue 71 (DB 71) dye in aqueous phase under visible light irradiation. The degree of degradation was found to be dependent on aqueous phase pH, duration of irradiation time, amount of photocatalyst, the initial dye concentration and kinetics of photodegradation. The maximum photocatytic degradation of DB 71 dye was found to be effective at pH 6.8. The optimum amount of photocatalyst was found 3 g L-1 of CuDZ for the complete degradation of DB 71 dye (0.01 g L-1). The reusability of the photo catalyst indicates that 96% of DB 71 dye was degraded up to 3rd cycles of use. The visible photo degradation of DB 71 dye was exhibited pseudo-first-order kinetics. Chemical oxygen demand and ESI-MS studies confirmed the complete mineralization of DB 71 dye molecules. (C) 2015 Elsevier Inc. All rights reserved.
机译:全世界遵循严格的环境标准导致了先进的氧化工艺的出现,该工艺可用于去除水和废水中的有毒污染物。在所有半导体光催化剂中,在可见光照射下,有机和无机污染物降解为危害较小的产品具有巨大潜力。本研究工作描述了通过共沉淀法合成铜掺杂的ZnO(CuDZ)以获得XRD分析证实的高结晶粉末。 FE-SEM图像显示CuDZ具有棉球状形态,尺寸均匀,范围从25到40 nm。还详细讨论了合成CuDZ的TEM,FT-IR和UV-DRS研究。测试了所制备的CuDZ催化剂的光催化活性,以在可见光照射下在水相中降解直接蓝71(DB 71)染料。发现降解程度取决于水相pH,照射时间的持续时间,光催化剂的量,初始染料浓度和光降解动力学。发现在pH 6.8下DB 71染料的最大光催化降解是有效的。发现了3 g L-1的CuDZ的最佳光催化剂量,可以完全降解DB 71染料(0.01 g L-1)。光催化剂的可重复使用性表明,直到第三次使用循环,96%的DB 71染料均被降解。 DB 71染料的可见光降解表现出拟一级动力学。化学需氧量和ESI-MS研究证实了DB 71染料分子的完全矿化。 (C)2015 Elsevier Inc.保留所有权利。

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