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Room temperature synthesis of TiO2 supported chitosan photocatalyst: Study on physicochemical and adsorption photo-decolorization properties

机译:室温合成TiO2负载壳聚糖光催化剂的理化和吸附光脱色性能研究

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The room temperature in-situ sol gel technique was used to synthesize TiO2 supported chitosan (CS) nanocomposites. The effect of calcination was assessed in the context of its physicochemical and adsorption-photodecolorization properties. During sol gel, hydrolysis and condensation of titanium alkoxide was conducted under acidic conditions, which resulted in the formation of crystalline anatase phase in TiO2-CS (TC) composite at room temperature. Furthermore, calcination treatments (100 degrees C, 300 degrees C, 500 degrees C) gradually increased the charge carrier recombination rates, due to the thermal degradation of Chitosan. Photocatalytic activity was assessed using Methyl orange, which resulted in 100% decolorization within 90 min of UV exposure with un-calcined nanocomposite. Hence, the reactive OH and NH2 functional groups on the surface of CS are responsible for the adsorption-photo decolorization process. Overall, this study provides comprehensive data on the effective modification of TiO2 with Chitosan and the effect of calcination on the physicochemical and adsorption-photo decolorization properties of the TC nanocomposite. (C) 2016 Elsevier Ltd. All rights reserved.
机译:室温原位溶胶凝胶技术被用来合成TiO2负载的壳聚糖(CS)纳米复合材料。在其物理化学和吸附-脱色性质的背景下评估了煅烧的效果。在溶胶凝胶过程中,烷氧基钛的水解和缩合在酸性条件下进行,导致室温下TiO2-CS(TC)复合材料中形成了锐钛矿型结晶相。此外,由于壳聚糖的热降解,煅烧处理(100℃,300℃,500℃)逐渐提高了电荷载流子的复合速率。使用甲基橙评估了光催化活性,使用未煅烧的纳米复合材料可在90分钟的紫外线照射下100%脱色。因此,CS表面上的反应性OH和NH 2官能团负责吸附-光致脱色过程。总体而言,这项研究提供了有关壳聚糖对TiO2的有效改性以及煅烧对TC纳米复合物的理化和吸附光脱色性能的综合数据。 (C)2016 Elsevier Ltd.保留所有权利。

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