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Highly stabilized Ag2O-loaded nano TiO2 for hydrogen production from glycerol: Water mixtures under solar light irradiation

机译:高度稳定的负载Ag2O的纳米TiO2,用于由甘油:在阳光照射下的水混合物制氢

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Nano TiO2 prepared by a hydrothermal method and silver-loaded nano TiO2 prepared by impregnation were studied for the photocatalytic production of hydrogen from glycerol: water mixtures. The structural characteristics were revealed using XRD, EDAX, DRS, TEM, XPS, BET surface area and Raman techniques. The photocatalytic hydrogen production has been investigated under solar light irradiation. Effects of nano TiO2 calcination temperature, silver loading, photocatalyst content, light source and Ag oxidation state on hydrogen production have been systematically studied. Maximum hydrogen production of 200 mol h(-1) g(-1) is observed on 4wt% silver-loaded nano TiO2 catalyst in pure water and the maximum hydrogen production of 7030 mu mol h(-1) g(-1) is observed on 3wt% silver-loaded nano TiO2 catalyst in glycerol: water mixtures. Silver-loaded nano TiO2 reduced and photodeposited catalysts show similar hydrogen production activities in glycerol: water mixtures under solar irradiation. The optimum catalyst modified with conducting carbon materials (graphene oxide, graphene, carbon nanotubes) by a solid-state dispersion method were also studied for hydrogen production under solar light irradiation. Compared with pure nano TiO2, a 3wt% silver-loaded nano TiO2/graphene composite exhibited an approximately 17-fold enhancement of hydrogen production leading to hydrogen production rates of 12,100 mu mol h(-1) g(-1). Based on the characterization results and hydrogen production activity on these catalysts, a structure-activity correlation has been proposed wherein the interacting Ag2O-Ag phases on the surface of nano TiO2 play an important role in maintaining a high hydrogen production activity under solar irradiation. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:研究了通过水热法制备的纳米二氧化钛和通过浸渍法制备的载银纳米二氧化钛,用于由甘油:水的混合物光催化制氢。使用XRD,EDAX,DRS,TEM,XPS,BET表面积和拉曼技术揭示了结构特征。在太阳光照射下已经研究了光催化制氢。研究了纳米二氧化钛的煅烧温度,银载量,光催化剂含量,光源和银的氧化态对产氢的影响。在纯水中的4wt%负载银的纳米TiO2催化剂上观察到最大氢气产生量为200 mol h(-1)g(-1),最大氢气产生量为7030 mu mol h(-1)g(-1)为在甘油:水的混合物中,用3wt%的负载银的纳米TiO2催化剂观察到。负载银的纳米TiO2还原和光沉积催化剂在阳光照射下在甘油:水的混合物中显示出相似的制氢活性。还研究了通过固态分散法用导电碳材料(氧化石墨烯,石墨烯,碳纳米管)改性的最佳催化剂,用于在太阳光照射下制氢。与纯纳米TiO2相比,3wt%的载银纳米TiO2 /石墨烯复合材料显示出大约17倍的氢产生增强,导致氢产生速率为12,100μmol h(-1)g(-1)。基于这些催化剂的表征结果和产氢活性,提出了一种结构活性相关性,其中纳米TiO2表面上相互作用的Ag2O-Ag相在维持太阳辐射下高产氢活性中起着重要作用。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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