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首页> 外文期刊>Catalysis Communications >Highly selective photocatalytic reduction of carbon dioxide with water over silver-loaded calcium titanate
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Highly selective photocatalytic reduction of carbon dioxide with water over silver-loaded calcium titanate

机译:用水含银钛酸钙的水高度选择性的光催化还原二氧化碳

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摘要

The once reported Ag-modified CaTiO3 photocatalyst was reexamined by optimizing the Ag loading amount and using a conventional photochemical reactor. This revealed that the Ag-modified CaTiO3 photocatalyst actually showed both high production rate of CO (54 mu mol h(-1)) and excellent selectivity towards CO formation (94%) by suppressing the H-2 production via water splitting. It is suggested that the high photocatalytic performance originates from not only the optimized amount of cocatalyst and the high irradiation light intensity but also the high concentration of dissolved CO2 that was achieved by a bubbling flow of CO2 at the lower reaction temperature. These reaction conditions provided ca. 40 times higher CO formation rate. It was proposed that the deposited small Ag nanoparticles are the selective active sites for CO formation and the CaTiO3 crystal surface produces H-2 preferably.
机译:通过优化Ag加载量并使用常规的光化学反应器,曾经报道了报道的Ag改性的CatiO3光催化剂。 这揭示了Ag改性的CatiO3光催化剂实际上通过抑制了通过水分裂抑制H-2产生的CO(54μmMolH(-1))的高生产率(54μmolH(-1))和对CO形成的优异选择性(94%)。 建议高光催化性能不仅源于优化的助催化剂和高辐射光强度,而且来自高辐射光强度,而且是通过在较低反应温度下的CO 2的起泡流动实现的高浓度的溶解二氧化碳。 这些反应条件提供了CA. 共同形成率高40倍。 提出,沉积的小Ag纳米颗粒是共同形成的选择性活性位点,CATIO3晶体表面优选地产生H-2。

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