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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Alkaline cleaning of PES membranes used in skimmed milk ultrafiltration:from reactor to spiral-wound module via a plate-and-frame module
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Alkaline cleaning of PES membranes used in skimmed milk ultrafiltration:from reactor to spiral-wound module via a plate-and-frame module

机译:脱脂牛奶超滤中所用PES膜的碱性清洁:通过板框模块从反应器到螺旋缠绕模块

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摘要

This paper deals with an in-depth study of the physicochemistry of PES membrane cleaning when the membrane was fouled by skimmed milk ultrafiltration.The main target of the cleaning was protein removal from the active layer of the PES membrane as irreversible fouling was likely due to pore entrance blocking.Alkaline cleaning was restricted to pH and temperature that can be further used at industrial scale with a spiral membrane(pH 11.5-12.0,T= 50 deg C),limitations due to glue and seals but not to PES itself.By cleaning UF-fouled membranes in a stirred reactor,it was shown that an efficient cleaning solution might have an interfacial energy close to gamma_L = 25 mJ m ~2 and be mainly non-polar.Comparisons of the cleaning efficiency obtained in the stirred reactor on a plate-and frame-pilot and on a spiral-wound pilot were made for various UF conditions,and the same conclusions can be drawn.However,cleaning under UF conditions also highlighted the limiting role of hydrodynamic conditions(pressure,velocity)on cleaning efficiency.In spiral geometry,the final water rinse appeared crucial and needs further optimisation,as it is time and water consuming.This study underlines the need of an approach combining physicochemistry and hydrodynamics for the optimisation of the entire cleaning step.
机译:本文深入研究了脱脂牛奶超滤对PES膜清洗的污染的理化作用。清洗的主要目标是从PES膜的活性层去除蛋白质,因为可能由于不可逆的污染碱性清洗仅限于pH值和温度,可以在工业规模上使用螺旋膜(pH 11.5-12.0,T = 50℃)进一步使用,由于胶水和密封而受到限制,但不适用于PES本身。在搅拌反应器中清洗被UF污染的膜时,表明有效的清洗溶液可能具有接近gamma_L = 25 mJ m〜2的界面能且主要是非极性的。在搅拌反应器中获得的清洗效率的比较在不同的超滤条件下进行了板框先导式和螺旋缠绕式先导试验,得出了相同的结论。但是,在超滤条件下进行清洁也突出了流体动力条件的局限性s(压力,速度)对清洁效率的影响。在螺旋几何形状中,最终的水漂洗显得至关重要,并且需要时间和水的消耗,因此需要进一步优化。这项研究强调了将物理化学和流体动力学相结合的方法以优化水处理的必要性。整个清洁步骤。

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