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Proof of Concept for Light Conducting Membrane Substrate for UV-Activated Photocatalysis as an Alternative to Chemical Cleaning

机译:紫外线活化光催化的光导膜基底作为化学清洗的替代方案的概念验证

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摘要

Adopting an effective strategy to control fouling is a necessary requirement for all membrane processes used in the water/wastewater treatment industry to operate sustainably. The use of ultraviolet (UV) activated photocatalysis has been shown to be effective in mitigating ceramic membrane fouling by natural organic matter. The widely used configuration in which light is directed through the polluted water to the membrane’s active layer suffers from inefficiencies brought about by light absorption by the pollutants and light shielding by the cake layer. To address these limitations, directing light through the substrate, instead of through polluted water, was studied. A UV conducting membrane was prepared by dip coating TiO2 onto a sintered glass substrate. The substrate could successfully conduct UV from a lamp source, unlike a typical alumina substrate. The prepared membrane was applied in the filtration of a humic acid solution as a model compound to study natural organic matter membrane fouling. Directing UV through the substrate showed only a 1 percentage point decline in the effectiveness of the cleaning method over two cleaning events from 72% to 71%, while directing UV over the photocatalytic layer had a 9 percentage point decline from 84% to 75%. Adapting the UV-through-substrate configuration could be more useful in maintaining membrane functionality during humic acid filtration than the current method being used.
机译:对于水/废水处理行业中使用的所有膜工艺,要使其持续运行,采取有效的策略来控制结垢是必不可少的要求。业已证明,使用紫外线(UV)活化的光催化可有效减轻天然有机物对陶瓷膜的污染。光被污染的水直接引导到膜的活性层的配置被广泛使用,其效率低下的原因是污染物吸收光和滤饼层遮光。为了解决这些限制,研究了将光引导穿过基板而不是通过污水。通过将TiO 2浸涂在烧结的玻璃基板上来制备紫外线传导膜。与典型的氧化铝基材不同,该基材可以成功地传导来自光源的紫外线。将制备的膜作为模型化合物应用于腐殖酸溶液的过滤,以研究天然有机物膜结垢。引导紫外线穿过基材,在两次清洁过程中,清洁方法的效果仅下降了1个百分点,从72%降至71%,而引导紫外线穿过光催化层的效果从84%下降至75%,降低了9个百分点。与通过当前方法使用的方法相比,在基材腐殖酸过滤过程中调整UV穿透基材的配置在保持膜功能方面可能更为有用。

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