ZnO photocatalysts applications in abating the organic pollutant contamination: A mini review

A.A. Abdul Mutalib, N.F. Jaafar
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引用次数: 13

Abstract

This works encompasses a short review of the adversity of various types of organic pollutants and the viability of ZnO in abating their occurrence in water bodies. The classes of organic pollutants that have been selected for the analysis were: dyes, pesticides, antibiotics and analgesics, and finally stimulants. As a result of the established data analysis, it can be construed that the toxicity of the organic pollutant can pose serious threats to the environment, public health, and well-being. To combat this matter, earlier studies proposed the reliability of ZnO catalyst in elevating the efficiency of the organic pollutant degradation process due to its outstanding photophysical properties. However, as the optical response range of ZnO is often limited to UV light, various modification strategies in ZnO architecture have been executed to extend its functionality in solar irradiation. Overall, it can be concluded that ZnO exerts remarkable potential to remediate the contaminated wastewater. Nevertheless, there are still a lot of aspects that need to be enhanced before its actual utilization as a part of the future wastewater treatment technology.

Abstract Image

氧化锌光催化剂在减少有机污染物污染中的应用综述
这项工作包括对各种类型的有机污染物的逆境和氧化锌在减少它们在水体中发生的可行性的简要回顾。被选定用于分析的有机污染物类别有:染料、杀虫剂、抗生素和止痛药,最后是兴奋剂。根据既定的数据分析,可以解释为,有机污染物的毒性可能对环境、公众健康和福祉构成严重威胁。为了解决这个问题,早期的研究提出了ZnO催化剂在提高有机污染物降解过程效率方面的可靠性,因为它具有出色的光物理性质。然而,由于ZnO的光响应范围通常局限于紫外光,因此人们对ZnO结构进行了各种修饰策略,以扩展其在太阳辐照下的功能。综上所述,ZnO对污染废水的修复具有显著的潜力。然而,作为未来污水处理技术的一部分,在实际利用之前,还有很多方面需要加强。
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