Iron-doped zinc oxide for photocatalyzed degradation of humic acid from municipal wastewater

光催化 腐植酸 废水 光降解 降级(电信) 化学 化学工程 陶瓷 核化学 材料科学 催化作用 环境工程 有机化学 环境科学 工程类 电信 计算机科学 肥料
作者
Muhammad Mohsin,Ijaz Ahmad Bhatti,Ambreen Ashar,Muhammad Waqas Khan,Muhammad Umer Farooq,Hareem Khan,Muhammad Tahir Hussain,Suraj Loomba,Md Mohiuddin,Ali Zavabeti,Muhammad Ahmad,Maryam Yousaf,Nasir Mahmood
出处
期刊:Applied Materials Today [Elsevier BV]
卷期号:23: 101047-101047 被引量:46
标识
DOI:10.1016/j.apmt.2021.101047
摘要

Degradation of natural organic matter especially Humic acid is a big challenge, while its byproducts are carcinogenic, which is a threat to life. Here, Fe3+:ZnO has been deployed on ceramic plats (CP) using SILAR method for solar photocatalytic mineralization of HA in municipal wastewater. Structural results show that ZnO and Fe3+:ZnO deployed over CP have an average crystallite size of 47.43 nm and 29.54 nm, respectively. Further, Fe3+ doping increased the conductivity of ZnO due to enhanced photon capturing ability and effective surface area. Almost 90% HA photodegradation was achieved at the reaction parameters optimized by response surface methodology. Owing to the strong interaction between negatively charged HA and positive zeta potential of [email protected] (24 mV) and Fe3+:[email protected] (26 mV). Moreover, a significant reduction in BOD (~73%), COD (~76%) and TOC (~63%) have been observed after solar photocatalytic treatment of municipal wastewater. In comparison, [email protected] hybrid removed HA (400 mgL−1) at the rate of 3.3 kgm−3d−1 with a lower reduction in BOD (~57%), COD (~45%) and TOC (~57%) than Fe3+:[email protected], confirming that the Fe doping has tuned the bandgap and manipulated the active sites onto the surface of ZnO. Moreover, direct coating of photocatalyst over CP provided exceptional stability and reusability as a photocatalyst which maintained ~80% of its activity even after 14 cycles of wastewater treatment and only lose 29% of its activity after 22 cycles. Hence, by designing a photocatalyst adhered directly onto the ceramic (substrate) present the novel sustainable photocatalyst supported wastewater treatment systems at a large scale.
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