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Engineering approach in stimulating photocatalytic H-2 production in a slurry and monolithic photoreactor systems using Ag-bridged Z-scheme pCN/TiO2 nanocomposite

机译:使用Ag - 桥接Z-Schinemence PCN / TiO2纳米复合材料在浆料和单片光反应器系统中刺激光催化H-2产生的工程方法

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Ag-bridged pCN/TiO2 Z-scheme heterojunction composite with faster charges separation for stimulating H-2 evolution under UV and visible light in different photo-catalytic reactor systems has been investigated. The photocatalytic activity was tested using slurry, fixed bed and monolith photo-reactor systems for continuous H-2 production from glycerol-water mixture. Using slurry system, Ag-pCN/TiO2 photo-catalyst produced 470 mu mol h(-1) of H-2 which is 8.41 and 9.66 times higher than pCN/TiO2 and pristine TiO2, respectively. The efficiency was improved due to development of heterojunction with faster charges separation, whereas, Ag provides hot photogenerated electrons by surface plasmon resonance (SPR) and active sites for H-2 production. The parameters study reveals that highest H-2 was obtained at pH 7, glycerol concentration of 5 wt% and 0.15 g of catalyst loading. Furthermore, by applying engineering approach Ag-pCN/TiO2 showed H-2 production rate of 10150 mu mol h(-1) using monolith reactor, a 13.36 and 21.6 times higher than fixed-bed and slurry photoreactors. The monolith honeycomb reactor exhibited higher AQY and space yield of 49.15% and 67.67 mu mol h(-1) cm(-3) than slurry reactor (15.77%, 3.615 mu mol h(-1)cm(-3)) and fixed-bed reactor (1.63%, 3.233 mu mol h(-1)cm(-3)). The superior performance of a monolith reactor was due to higher photon flux utilization, large illuminated surface area and processing volume. The schematic of conversional and Z-scheme mechanism of Ag-pCN/TiO2 were proposed based on the results. Thus, excellent performance of catalyst using monolith reactor compared to slurry and fixed-bed reactor for H-2 production would offer a new opportunity of engineering approach for renewable fuels applications.
机译:研究了具有更快的电荷分离的Ag - 桥接PCN / TiO2 Z样杂交复合材料,用于在不同光催化反应器系统中刺激紫外线和可见光下的H-2演化。使用浆料,固定床和整料光反应器系统测试光催化活性,用于从甘油 - 水混合物中连续的H-2制备。使用浆料系统,Ag-PCN / TiO 2光催化剂产生470μmolH(-1)的H-2,分别比PCN / TiO 2和原始TiO 2高8.41和9.66倍。由于异质结具有更快的电荷分离,因此通过表面等离子体共振(SPR)和H-2产生的活性位点提供热光发射电子提供了效率。参数研究表明,在pH7中获得最高的H-2,甘油浓度为5wt%和0.15g催化剂负载。此外,通过施加工程方法Ag-PCN / TiO 2,使用单溶剂反应器,13.36和21.6倍的H-2摩尔H(-1)的H-2产生速率,13.36和21.6倍,浆料和浆料光反应器。单型蜂窝反应器的含量高出49.15%和67.67μmolH(-1)cm(-3)的QY和空间收率高于浆料反应器(15.77%,3.615μmolH(-1)cm(-3))和固定电抗器(1.63%,3.233μmolH(-1)cm(-3))。整体反应器的优异性能是由于光子通量利用率较高,发光表面积和加工体积。基于结果提出了Ag-PCN / TiO2的交易和Z方案机制的示意图。因此,与H-2生产的浆料和固定床反应器相比,使用整体反应器的催化剂的优异性能将为可再生燃料应用提供新的工程方法的新机会。

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