Photochemical reduction of nitrate to ammonia using layered hydrous titanate/cadmium sulphide nanocomposites

Tsugio Sato, Ken-Ichi Sato, Y. Fujishiro, T. Yoshioka, A. Okuwaki
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引用次数: 26

Abstract

The photocatalytic activity of H2Ti4O9/CdS nanocomposites incorporating CdS particles, less than 0·8 nm thick, in the interlayer of H2Ti4O9 was evaluated for the reduction of NO3− with and without methanol. NO3− was photochemically reduced by bandgap illumination in the presence of H2Ti4O9/CdS nanocomposites with and without methanol although unsupported CdS showed no noticeable photocatalytic activity for NO3− reduction. The oxidation of CdS in H2Ti4O9/CdS to SO42- was accompanied by NO3− reduction without methanol, whereas addition of methanol was useful to promote the NO3− reduction and depress the oxidation of CdS. The catalytic activity of H2Ti4O9/CdS greatly increased with doping Pt particles in the interlayer.
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利用层状水合钛酸盐/硫化镉纳米复合材料将硝酸盐光化学还原为氨
考察了在H2Ti4O9中间层中加入厚度小于0.8 nm的CdS颗粒的H2Ti4O9/CdS纳米复合材料在甲醇和不甲醇作用下对NO3−的光催化活性。在带隙照明下,H2Ti4O9/CdS纳米复合材料(含甲醇和不含甲醇)的NO3−均被光化学还原,但未负载的CdS对NO3−的还原没有明显的光催化活性。在H2Ti4O9/CdS中,CdS氧化为SO42-伴随着NO3−的还原,而甲醇的加入有利于促进NO3−的还原和抑制CdS的氧化。在中间层中掺杂Pt粒子后,H2Ti4O9/CdS的催化活性大大提高。
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