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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Photocatalytic degradation of real industrial poultry wastewater via platinum decorated BiVO4/g-C3N4 photocatalyst under solar light irradiation
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Photocatalytic degradation of real industrial poultry wastewater via platinum decorated BiVO4/g-C3N4 photocatalyst under solar light irradiation

机译:通过铂金在太阳光照射下通过铂饰品Bivo4 / G-C3N4光催化剂的铂催化降解真正的工业家禽废水

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摘要

The discharge of a high concentration of contaminants from industrial poultry wastewater has caused a major catastrophic towards environmental remediation. Herein, different amounts of platinum nanoparticles were successfully incorporated into Pt@BiVO4/g-C3N4 photocatalyst via wet-impregnation technique. The crystallographic, morphological and optical properties of the photocatalysts were comprehensively analysis via several characterization techniques. The photocatalytic degradation performance of Pt@BiVO4/g-C3N4 photocatalyst was evaluated using real industrial poultry wastewater under solar light irradiation. The effects of the pH wastewater and the amount of platinum loading were systematically studied using response surface methodology (RSM). The Pt@BiVO4/g-C3N4 photocatalyst prepared at 1.5 wt. % platinum with the pH of 8 exhibited superior photodegradation performance with 93.5% rate of COD removal within 3 h. The FESEM micrograph analysis suggested that the intimate contact between Pt, BiVO4, and g-C3N4 in the as-developed photocatalyst allows a smooth migration and separation of photogenerated charge carriers. In addition, the XRD, EDX and XPS analysis further confirmed the successful formation of the as-prepared Pt@BiVO4/g-C3N4 photocatalyst. Moreover, the as-prepared photocatalyst showed very good recyclability and photostability up to 3 cycles, indicating that the as-developed photocatalyst successfully inhibits the fast recombination rate between photo generated charge carriers. This work serves as solid evidence of the photocatalyst technology readiness to be put in the real practical application in treating the industrial wastewater.
机译:从工业家禽废水中排出高浓度的污染物导致对环境修复的重大灾难性。在此,通过湿浸渍技术成功地将不同量的铂纳米颗粒成功掺入Pt @ Bivo4 / g-C3N4光催化剂中。光催化剂的晶体,形态学和光学性质通过几种表征技术全面分析。在太阳光照射下使用真正的工业家禽废水评价Pt @ Bivo4 / G-C3N4光催化剂的光催化降解性能。使用响应面法(RSM)系统地研究了pH废水的影响和铂载荷量。 PT @ Bivo4 / G-C3N4光催化剂在1.5重量%时制备。具有8 pH的%铂表现出优异的光降解性能,在3小时内以93.5%的COD去除率。 FeSEM显微照片分析表明,在开发的光催化剂中Pt,Bivo4和G-C3N4之间的紧密接触允许光源性电荷载体的平滑迁移和分离。此外,XRD,EDX和XPS分析进一步证实了成功形成了AS制备的Pt @ Bivo4 / G-C3N4光催化剂。此外,当制备的光催化剂显示出非常良好的可回收性和光稳定性,最多3个循环,表明,如开发的光催化剂成功地抑制了光生成的电荷载体之间的快速重组率。这项工作用作光催化剂技术准备的固体证据,以便在治疗工业废水中的实际应用中。

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