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Caustic-induced gelation of whey deposits in the alkali cleaning of membranes

机译:碱清洗膜时,碱引起的乳清沉积物胶凝

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摘要

In the literature, it has been observed that in the cleaning of whey-fouled membranes, the flux recovery can decrease dramatically when using high pH and temperature when the permeate side is kept open. The only hypothesis presented so far states that the in-pore deposits swell in contact with aqueous NaOH, narrowing the membrane pores and hence, reducing the filtration flux. This hypothesis does not explain why the swollen deposits are not dissolved at high pH. In this paper, it is proposed that whey deposits are transformed into gels resulting from contacting NaOH. The gelling process increases significantly the resistance of the deposits to alkali. The kinetics of the caustic-induced gelation of whey protein concentrate solutions was found to verify that this gelling process could occur in similar conditions of pH and temperature as those used in the cleaning operations. The formation of a gel layer in a whey solution in contact with an alkaline solution was also investigated. © 2005 Elsevier B.V. All rights reserved.
机译:在文献中,已经观察到在清洁乳清污垢的膜时,当渗透侧保持开放时,在使用高pH和高温时通量回收率会急剧下降。到目前为止,提出的唯一假设表明,与NaOH水溶液接触时,孔内沉积物膨胀,从而使膜孔变窄,从而降低了过滤通量。该假设不能解释为什么溶胀的沉积物在高pH下不能溶解。在本文中,提出了乳清沉积物由于与NaOH接触而转变成凝胶。胶凝过程显着增加了沉积物对碱的抵抗力。发现苛性碱诱导的乳清蛋白浓缩物溶液凝胶化的动力学证实了这种凝胶化过程可以在与清洗操作相似的pH和温度条件下发生。还研究了在与碱性溶液接触的乳清溶液中凝胶层的形成。 &复制; 2005 Elsevier B.V.保留所有权利。

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