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Concurrent photocatalytic hydrogen production and organic degradation by a composite catalyst film in a two-chamber photo-reactor

机译:两腔光反应器中复合催化剂膜同时进行光催化产氢和有机降解

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摘要

A novel visible light-driven photocatalyst film, MoS_2/Ag/ TiO_2, was synthesized on a glass-fiber membrane. The composite catalyst film had a multi-layer structure with Ag as nanoconjunctions between the MoS_2 and TiO_2 layers. The catalyst film performed well for both photocatalytic hydrogen production and organic degradation in a two-chamber photo-reactor under either solar or visible light. Hydrogen was produced in the cathode side chamber while the model organic was decomposed in the anode side chamber. The specific hydrogen production rate went through a maximum of 85 mmol/m~2-h with an energy conversion efficiency of 0.85%, while the maximum specific organic carbon removal for formic acid under solar light reached 1,520 mg/m2-h. It is apparent that Ag between the TiO_2 and MoS_2 layers allowed the transfer of photo-excited electrons via TiO_2→Ag→MoS_2 for organic degradation and H+ reduction (e.g. hydrogen evolution) in two different chambers.
机译:在玻璃纤维膜上合成了一种新型的可见光驱动的光催化剂膜MoS_2 / Ag / TiO_2。该复合催化剂膜具有多层结构,其中Ag作为MoS_2和TiO_2层之间的纳米结。在两室光反应器中,在阳光或可见光下,该催化剂膜在光催化制氢和有机降解方面均表现良好。氢气在阴极侧腔室中产生,而有机模型在阳极侧腔室中分解。比氢产生速率最大为85 mmol / m〜h,能量转化效率为0.85%,而在太阳光下甲酸的最大比有机碳去除量为1520 mg / m〜h。显然,在TiO_2和MoS_2层之间的Ag允许光激发电子通过TiO_2→Ag→MoS_2转移,从而在两个不同的腔室中进行有机降解和H +还原(例如析氢)。

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