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氧化锌基光催化剂在水处理技术中的最新进展:综述。

Recent developments of zinc oxide based photocatalyst in water treatment technology: A review.

机构信息

Nanotechnology & Catalysis Research Centre (NANOCAT), 3rd Floor, Block A, Institute of Postgraduate Studies (IPS), University of Malaya, 50603 Kuala Lumpur, Malaysia.

Nanotechnology & Catalysis Research Centre (NANOCAT), 3rd Floor, Block A, Institute of Postgraduate Studies (IPS), University of Malaya, 50603 Kuala Lumpur, Malaysia.

出版信息

Water Res. 2016 Jan 1;88:428-448. doi: 10.1016/j.watres.2015.09.045. Epub 2015 Oct 28.

Abstract

Today, a major issue about water pollution is the residual dyes from different sources (e.g., textile industries, paper and pulp industries, dye and dye intermediates industries, pharmaceutical industries, tannery and craft bleaching industries, etc.), and a wide variety of persistent organic pollutants have been introduced into our natural water resources or wastewater treatment systems. In fact, it is highly toxic and hazardous to the living organism; thus, the removal of these organic contaminants prior to discharge into the environment is essential. Varieties of techniques have been employed to degrade those organic contaminants and advanced heterogeneous photocatalysis involving zinc oxide (ZnO) photocatalyst appears to be one of the most promising technology. In recent years, ZnO photocatalyst have attracted much attention due to their extraordinary characteristics. The high efficiency of ZnO photocatalyst in heterogeneous photocatalysis reaction requires a suitable architecture that minimizes electron loss during excitation state and maximizes photon absorption. In order to further improve the immigration of photo-induced charge carriers during excitation state, considerable effort has to be exerted to further improve the heterogeneous photocatalysis under UV/visible/solar illumination. Lately, interesting and unique features of metal doping or binary oxide photocatalyst system have gained much attention and became favourite research matter among various groups of scientists. It was noted that the properties of this metal doping or binary oxide photocatalyst system primarily depend on the nature of the preparation method and the role of optimum dopants content incorporated into the ZnO photocatalyst. Therefore, this paper presents a critical review of recent achievements in the modification of ZnO photocatalyst for organic contaminants degradation.

摘要

目前,水污染的一个主要问题是来自不同来源(例如纺织工业、纸浆和造纸工业、染料和染料中间体工业、制药工业、制革和工艺漂染工业等)的残留染料,以及各种各样的持久性有机污染物已经被引入我们的自然水资源或废水处理系统。事实上,它们对生物是高度有毒和有害的;因此,在将这些有机污染物排放到环境中之前,必须将其去除。已经采用了各种技术来降解这些有机污染物,而涉及氧化锌 (ZnO) 光催化剂的高级非均相光催化似乎是最有前途的技术之一。近年来,由于 ZnO 光催化剂具有非凡的特性,因此引起了人们的广泛关注。ZnO 光催化剂在非均相光催化反应中的高效率需要一种合适的结构,这种结构可以在激发态下最小化电子损失,并最大化光子吸收。为了进一步提高激发态下光致载流子的输运效率,必须进一步改进在 UV/可见光/太阳光照射下的非均相光催化。最近,金属掺杂或二元氧化物光催化剂系统的有趣和独特特性引起了人们的极大关注,并成为各个科学家群体的热门研究课题。值得注意的是,这种金属掺杂或二元氧化物光催化剂系统的性质主要取决于制备方法的性质以及最佳掺杂剂含量在 ZnO 光催化剂中的作用。因此,本文对用于有机污染物降解的 ZnO 光催化剂的改性的最新成果进行了综述。

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