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Photocatalytic degradation of 4-chlorophenol with a smectite catalyst

机译:蒙脱石催化剂光催化降解4-氯苯酚

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Based on the principle of electron transfer in the process of photocatalysis, this study uses a smectite clay catalyst with semiconducting properties to degrade the target pollutant 4-chlorophenol (4-CP). Multivariate analysis is adopted to address major factors affecting the degradation efficiency of smectite catalyst. After calcinations at about 400 degrees C, each type of smectite catalyst is observed by TEM and the mean transverse diameter of the synthesized catalyst is about 10-50 nm. The result of photocatalysis among the four types of smectite catalyst such as smectite-Ag, smectite-Zn, smectite-Ti and smectite-Ag/Zn on the degradation of 4-CP shows smectite-Ti catalyst to have the best effect. On the other hand, smectite-Ag/Zn catalyst works better than single smectite-Ag and smectite-Zn catalyst under the same condition. Due to competitiveness between intermediate products and targets for reactive sites of (OH)-O-center dot in the later stages of photocatalysis, there is a tendency of a decrease in the reaction rate of the smectite-Zn catalyst. Any amount of catalyst greater than 0.1 wt.% will, due to shielding effects, decrease the utilization of light energy and degradation efficiency. The higher the pH value, the more (OH)-O-center dot radicals will be generated to react with organic matter and increase reaction rate. (c) 2007 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:基于光催化过程中电子转移的原理,本研究使用具有半导体性能的蒙脱石粘土催化剂降解目标污染物4-氯酚(4-CP)。采用多变量分析来解决影响绿土催化剂降解效率的主要因素。在约400℃下煅烧后,通过TEM观察到每种类型的蒙脱石催化剂,并且合成催化剂的平均横向直径为约10-50nm。蒙脱石-Ag,蒙脱石-Zn,蒙脱石-Ti和蒙脱石-Ag / Zn这四种类型的蒙脱石催化剂对4-CP的光催化降解结果表明,蒙脱石-Ti催化剂具有最佳的降解效果。另一方面,在相同条件下,蒙脱石-Ag / Zn催化剂的性能优于单一蒙脱石-Ag和蒙脱石-Zn催化剂。由于在光催化的后期,中间产物与(OH)-O-中心点的反应位点的靶标之间具有竞争性,因此存在蒙脱石-Zn催化剂的反应速率降低的趋势。由于屏蔽作用,任何大于0.1重量%的催化剂量都会降低光能的利用和降解效率。 pH值越高,将生成更多(OH)-O-中心点自由基,与有机物发生反应并提高反应速率。 (c)2007年台湾化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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