TiO2-ZnO复合材料光降解环境污染物橙G的研究

Md Abdullah Bin Samad, Md. Amjad Hossain, Tajmeri S. A. Islam, Waziha Farha
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引用次数: 1

摘要

日益严重的水污染是一个令人担忧的问题,因为孟加拉国数百万人无法获得纯净的水。不仅在孟加拉国,而且在全世界,每年都有相当多的人死于受污染的水。许多工业、制革厂、公司等正在向周围的水中排放大量对环境有害的物质。这些污染物中许多是工业染料。印染过程中工业用水中染料的流失破坏了地表水的美观性。它们减少了光线的穿透,妨碍了水生生物,阻碍了光合作用。有些染料也可能具有毒性、诱变性和致癌性。本研究的目的是在水被污染之前去除污染物染料橙G。采用不同光源的光降解方法,用TiO2-ZnO等复合材料矿化橙色G染料。采用水热法制备了该复合材料。所制备的TiO2-ZnO复合材料的光催化性能有助于最大限度地减少染料对水的污染。在可见光、紫外光和太阳光等不同光源下,对该复合材料进行了光降解实验。光照条件下的光降解率最高可达79.60%。紫外光和可见光下的光降解率分别为48.0%和18.40%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photo-Degradation of Orange G as an Environmental Pollutant with TiO2-ZnO Composite Material
The increasing water pollution is a great concern as millions of people don't have access to pure water in Bangladesh. A considerable number of people are dying of contaminated water each year not only in Bangladesh but all over the world. Many industries, tanneries, companies, etc. are emitting lots of environmentally hazardous materials into the surrounding water. Many of these pollutants are industrial dyes. The dyes loss from the industrial water during dyeing operation damage the esthetic merit of surface water. They minimize light penetration, hamper aquatic lives and hinder photosynthesis. Some dyes may also have toxic, mutagenic, and carcinogenic characteristics. The purpose of this research is to get rid of the pollutant dye Orange G before the water is contaminated. A method named photo-degradation using different light sources is used to mineralize Orange G dye with composite materials including TiO2-ZnO. This composite was prepared by the hydrothermal method. The photocatalytic behavior of the prepared composite TiO2-ZnO helps in minimizing the effect of this dye to save the water from contamination. The composite compoundwas studied by experimenting on photo-degradation with Orange G under different light sources such as visible light, UV light, and sunlight. The photo-degradation percentage was found to maximum of 79.60 in the presence of sunlight. The percentages of photo-degradation under UV light and visible light were 48.0 and 18.40 respectively.
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