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首页> 外文期刊>Frontiers in Chemistry >Ti4O7/g-C3N4 for Visible Light Photocatalytic Oxidation of Hypophosphite: Effect of Mass Ratio of Ti4O7/g-C3N4
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Ti4O7/g-C3N4 for Visible Light Photocatalytic Oxidation of Hypophosphite: Effect of Mass Ratio of Ti4O7/g-C3N4

机译:Ti4O7 / g-C3N4可见光光催化氧化次磷酸盐:Ti4O7 / g-C3N4质量比的影响

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摘要

Hypophosphite wastewater treatment is still a critical issue in metallurgical processes and the oxidation of hypophosphite to phosphate followed by the precipitation of phosphate is an important strategy for hypophosphite wastewater treatment. Herein, Ti4O7/g-C3N4 photocatalysts with various mass ratios (Ti4O7 (m): g-C3N4 (m) = 0.5, 0.2, 0.1 and 0.05) were synthesized by a hydrolysis method and the effect of the mass ratio of Ti4O7 (m): g-C3N4 (m) on Ti4O7/g-C3N4 visible light photocatalytic oxidation of hypophosphite was evaluated. The as-prepared Ti4O7/g-C3N4 were characterized and confirmed by SEM, XPS, XRD and FTIR. Moreover, the specific surface area and the distribution of pore size of Ti4O7/g-C3N4 was also analyzed. Our results showed that Ti4O7/g-C3N4 exhibited remarkably improved photocatalytic performance on hypophosphite oxidation compared with g-C3N4 and meanwhile 1:2-Ti4O7/g-C3N4 with a mass ratio of 0.5 showed the best photocatalytic performance with the highest oxidation rate constant (17.7-fold and 91.0-fold higher than that of pure g-C3N4 and Ti4O7, respectively). The enhanced performance of photocatalytic oxidation of hypophosphite was ascribed to the heterojunction structure of Ti4O7/g-C3N4 with broader light absorption and significantly enhanced efficiency of the charge carrier (e?-h+) generation and separation. Additionally, the generated ?OH and ?O2- radicals contributed to the hypophosphite oxidation during the photocatalytic system.
机译:次磷酸盐废水处理仍是冶金过程中的关键问题,次磷酸盐氧化为磷酸盐,然后沉淀出磷酸盐是次磷酸盐废水处理的重要策略。在此,通过水解法合成了各种质量比(Ti4O7(m):g-C3N4(m)= 0.5、0.2、0.1、0.05)的Ti4O7 / g-C3N4光催化剂,并以质量比的效果进行了合成。 ):评价了在Ti 4 O 7 / g-C 3 N 4上的g-C 3 N 4(m)可见光对次磷酸盐的光催化氧化。通过SEM,XPS,XRD和FTIR对所制备的Ti4O7 / g-C3N4进行表征和确认。此外,还分析了Ti 4 O 7 / g-C 3 N 4的比表面积和孔径分布。我们的结果表明,与g-C3N4相比,Ti4O7 / g-C3N4表现出对次磷酸盐氧化的显着改善的光催化性能,而质量比为0.5的1:2-Ti4O7 / g-C3N4表现出最佳的光催化性能和最高的氧化速率常数(分别比纯g-C3N4和Ti4O7高17.7倍和91.0倍)。次磷酸盐的光催化氧化性能增强归因于Ti4O7 / g-C3N4的异质结结构,具有更宽的吸光度,并显着提高了电荷载流子(e?-h +)的产生和分离效率。另外,在光催化体系中,产生的αOH和αO2-自由基有助于次磷酸盐的氧化。

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