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TiO{sub}2 coated activated carbon: A regenerative technology for water recovery

机译:TiO {亚} 2涂层活性炭:恢复的再生技术

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Two widespread practices in water treatment are, removal of pollutants via adsorption onto activated carbon, and, oxidation of pollutants using a photocatalyst slurry and ultraviolet radiation. The ultimate goal of this research is to combine the adsorptive properties of carbon and the oxidative properties of titanium dioxide (TiO{sub}2), and construct a photocatalytically regenerative carbon filter for 100% water recovery. The premise is that the activated carbon, coated with TiO{sub}2, will capture the compounds through traditional filtration and adsorption. Once the carbon becomes exhausted, it can be regenerated in-situ by turning on the UV lamps thereby activating the photocatalyst. This paper presents a comparison of the adsorption-oxidative capacities of three commercially available carbons, F400, HD4000, and BioNuchar, coated via mechanofusion with loadings of 1%, 3%, and 5% by volume of TiO{sub}2, as well as early data on the regenerative capacity of HD4000 and F400 loaded with 1% TiO{sub}2 via boil-deposition.
机译:在水处理中的两个广泛的实践是通过吸附在活性炭上除去污染物,以及使用光催化剂浆料和紫外线辐射的污染物氧化。该研究的最终目标是将碳的吸附性和二氧化钛(TiO {Sub} 2)的氧化性能结合,并构建光催化再生碳过滤器100%水回收。前提是,涂有TiO {Sub} 2的活性炭将通过传统过滤和吸附来捕获化合物。一旦碳变得耗尽,就可以通过打开UV灯来原位再生,从而激活光催化剂。本文介绍了三种市售碳的吸附 - 氧化能力,F400,HD4000和Bionuchar的吸附 - 氧化能力,通过机械融合涂覆1%,3%和5%(5%)的TiO {} 2,也是如此作为HD4000和F400的再生能力的早期数据,通过沸腾地装载1%TiO {Sub} 2。

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