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Highly effective photocatalytic system comprising semiconductor photocatalyst and supported bimetallic non-photocatalyst for selective reduction of nitrate to nitrogen in water

机译:包含半导体光催化剂和负载型双金属非光催化剂的高效光催化系统,用于将水中的硝酸盐选择性还原为氮

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摘要

Photocatalytic reduction of NO3~- under UV irradiation in the presence of ethanol was carried out in the presence of semiconductor photocatalyst Pt/TiO2 and supported bimetallic non-photocatalyst Sn-Pd/Al2O3, which were dispersed in water. This system effectively and selectively promoted the photocatalytic reduction of NO3~- to N2, whereas PtAnO2 or Sn-Pd/Al2O3 alone showed no or little activity under the reaction conditions. The decomposition rate of NO3~- and selecdvity to gaseous nitrogen compounds (mainly N2) for the present photocatalytic system were higher than those for TiO2 photocatalyst directly-modified with Sn-Pd particles.
机译:在存在乙醇的半导体光催化剂Pt / TiO2和负载型双金属非光催化剂Sn-Pd / Al2O3的存在下,在乙醇存在下于紫外线辐射下,对NO3-进行光催化还原。该体系有效地,选择性地促进了NO3〜-到N2的光催化还原,而单独的PtAnO2或Sn-Pd / Al2O3在反应条件下则没有或几乎没有活性。在本光催化体系中,NO3〜和分解成气态氮化合物(主要是N2)的分解速率高于直接用Sn-Pd颗粒改性的TiO2光催化剂的分解速率。

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