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Degradation of Polypropylene Membranes Applied in Membrane Distillation Crystallizer

机译:膜蒸馏结晶器中聚丙烯膜的降解

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The studies on the resistance to degradation of capillary polypropylene membranes assembled in a membrane crystallizer were performed. The supersaturation state of salt was achieved by evaporation of water from the NaCl saturated solutions using membrane distillation process. A high feed temperature (363 K) was used in order to enhance the degradation effects and to shorten the test times. Salt crystallization was carried out by the application of batch or fluidized bed crystallizer. A significant membrane scaling was observed regardless of the method of realized crystallization. The SEM-EDS, DSC, and FTIR methods were used for investigations of polypropylene degradation. The salt crystallization onto the membrane surface accelerated polypropylene degradation. Due to a polymer degradation, the presence of carbonyl groups on the membranes’ surface was identified. Besides the changes in the chemical structure a significant mechanical damage of the membranes, mainly caused by the internal scaling, was also found. As a result, the membranes were severely damaged after 150 h of process operation. A high level of salt rejection was maintained despite damage to the external membrane surface.
机译:对组装在膜结晶器中的毛细管聚丙烯膜的抗降解性进行了研究。盐的过饱和状态是通过使用膜蒸馏工艺从NaCl饱和溶液中蒸发水来实现的。为了提高降解效果并缩短测试时间,使用了较高的进料温度(363 K)。通过分批或流化床结晶器进行盐结晶。不管实现结晶的方法如何,都观察到明显的膜结垢。 SEM-EDS,DSC和FTIR方法用于研究聚丙烯的降解。盐在膜表面的结晶加速了聚丙烯的降解。由于聚合物降解,可以确定膜表面上存在羰基。除了化学结构的变化外,还发现了主要由内部结垢引起的膜的显着机械损伤。结果,在150小时的处理操作后膜被严重损坏。尽管损坏了外膜表面,但仍保持了较高的脱盐率。

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