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Photocatalytic hydrogen production in a UV-irradiated fluidized bed reactor

机译:紫外线辐照流化床反应器中的光催化制氢

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Since the discovery of photocatalytic watersplitting over titanium dioxide (TiO_2), researchers have typically only employed immobilized-film and suspended slurry photocatalysts. Here we present watersplitting in a UV-irradiated fluidized bed reactor with a novel, fluidizable watersplitting photocatalyst. This approach was taken to address the mass-transfer effects, poor radiation distribution, parasitic back-reaction and photocatalyst handling difficulties that limit the efficiency and scalability of existing watersplitting systems. Using a 2.2M Na_2CO_3 solution, significant hydrogen production rates were achieved. A marked increase in the hydrogen production rate was observed when compared to results obtained by a suspended slurry TiO_2 photocatalyst in the same reactor.
机译:自从发现在二氧化钛(TiO_2)上进行光催化水分解后,研究人员通常只使用固定化膜和悬浮淤浆光催化剂。在这里,我们介绍了一种新型的可流化水分解光催化剂,在紫外线辐射的流化床反应器中进行水分解。采取这种方法来解决传质效应,不良的辐射分布,寄生的背反应和光催化剂处理难题,这些难题限制了现有水分解系统的效率和可扩展性。使用2.2M Na_2CO_3溶液,可获得显着的氢气生产率。当与在相同反应器中悬浮的浆料TiO 2光催化剂获得的结果相比时,观察到氢产生速率的显着增加。

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