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On the Morphological Characterization Procedures of Multilayer Hydrophobic Ceramic Membranes for Membrane Distillation Operations

机译:膜蒸馏操作用多层疏水陶瓷膜的形态表征程序

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The paper introduces some aspects of the characterization of hydrophobized multilayer ceramic membranes intended for use in membrane distillation (MD) operations. Four-layer hydrophobic carbon-based titania membranes, manufactured by the Fraunhofer Institute for Ceramic Technologies and Systems (IKTS, Hermsdorf, Germany), were tested according to the gas permeation technique. Gas permeance data were elaborated following the premises of the dusty gas model, to calculate the average pore size and the porosity-tortuosity ratio of each layer. Membrane testing was the opportunity to discuss which characterization method is more appropriate to obtain the membrane parameters necessary for the simulation of membranes in MD processes. In the case of multilayer membranes, the calculation of the morphological parameters should be performed for each layer. The “layer-by-layer gas permeation” method, previously introduced by other authors and completed in this work, is more appropriate for obtaining representative parameters of the membrane. Conversely, the calculation of morphological parameters, averaged over the entire membrane, might lead to heavy underestimations of the total membrane resistance and then to a heavy error on the transmembrane flux simulation.
机译:本文介绍了旨在用于膜蒸馏(MD)操作的疏水化多层陶瓷膜表征的某些方面。根据气体渗透技术测试了由弗劳恩霍夫陶瓷技术和系统研究所(IKTS,德国赫姆斯多夫)制造的四层疏水性碳基二氧化钛膜。根据含尘气体模型的前提,详细阐述了气体渗透率数据,以计算平均孔径和各层的孔隙率-曲折率。膜测试是讨论哪种表征方法更适合获得MD工艺中膜模拟所必需的膜参数的机会。对于多层膜,应对每一层进行形态参数的计算。先前由其他作者介绍并在这项工作中完成的“逐层气体渗透”方法更适合于获得膜的代表性参数。相反,在整个膜上平均的形态参数的计算可能会导致对总膜电阻的严重低估,从而导致跨膜通量模拟的严重误差。

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