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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Study of a hybrid process combining ozonation and membrane filtration-filtration of model solutions
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Study of a hybrid process combining ozonation and membrane filtration-filtration of model solutions

机译:臭氧化与膜过滤-模型溶液过滤相结合的混合工艺研究

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A hybrid process, consisting of ozonation and membrane filtration, was studied for the treatment of surface water or low-contaminated process wastewater. The main focus of this study centres on tests to determine the effect of ozone on membrane fouling during microfiltration and ultrafiltration. In this work, ceramic membranes with pore sizes in the range of 0.2 mum to a cut-off of 1 kD underwent lab-scale tests using model bentonite and humic acid solutions. Results showed that, by adding ozone during microfiltration and ultrafltration of the humic acid solutions, membrane fouling for all membranes could be greatly reduced, thus obviating the need to backflush or clean the membranes. As for the bentonite solutions however, membrane fouling, which was caused by deposits of suspended inorganic substances, was not affected to any great extent by the addition of ozone. Microporous membranes with a pore size in the range of 10-50 nm proved to be the best possible option for this hybrid process.
机译:研究了由臭氧处理和膜过滤组成的混合工艺,用于处理地表水或低污染工艺废水。这项研究的主要重点在于确定微过滤和超滤过程中臭氧对膜污染的影响的测试。在这项工作中,使用模型膨润土和腐殖酸溶液对孔径在0.2微米至1 kD截止范围内的陶瓷膜进行了实验室规模的测试。结果显示,通过在腐殖酸溶液的微滤和超滤过程中添加臭氧,可以大大减少所有膜的膜污染,从而无需反冲洗或清洁膜。然而,对于膨润土溶液,由于悬浮的无机物的沉积而引起的膜污染在很大程度上不受臭氧的影响。孔径在10-50 nm范围内的微孔膜被证明是该混合工艺的最佳选择。

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