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首页> 外文期刊>Angewandte Chemie >Membrane Filtration with Liquids: A Global Approach with Prior Successes, New Developments and Unresolved Challenges
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Membrane Filtration with Liquids: A Global Approach with Prior Successes, New Developments and Unresolved Challenges

机译:膜过滤液体:全球性方法,具有先前成功,新的发展和尚未解决的挑战

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摘要

After 70 years, modern pressure-driven polymer membrane processes with liquids are mature and accepted in many industries due to their good performance, ease of scale-up, low energy consumption, modular compact construction, and low operating costs compared with thermal systems. Successful isothermal operation of synthetic membranes with liquids requires consideration of three critical aspects or "legs" in order of relevance: selectivity, capacity (i.e. permeation flow rate per unit area) and transport of mass and momentum comprising concentration polarization (CP) and fouling (F). Major challenges remain with respect to increasing selectivity and controlling mass transport in, to and away from membranes. Thus, prediction and control of membrane morphology and a deep understanding of the mechanism of dissolved and suspended solute transport near and in the membrane (i.e. diffusional and convective mass transport) is essential. Here, we focus on materials development to address the relatively poor selectivity of liquid membrane filtration with polymers and discuss the critical aspects of transport limitations. Machine learning could help optimize membrane structure design and transport conditions for improved membrane filtration performance.
机译:70年后,由于其良好的性能,易于扩大,低能耗,模块化结构,模块化紧凑型结构和低运行成本,现代压力驱动的聚合物膜工艺在许多行业中都是成熟的,并且在许多行业中接受。合成膜的成功等温手术与液体需要考虑三个关键方面或“腿”按相关性顺序:选择性,容量(即每单位面积渗透流量)以及包含浓度极化(CP)和污染物(CP)和污染物( F)。对于增加的选择性和控制膜,对膜的群发,仍然存在主要挑战。因此,对膜形态的预测和控制以及对膜附近和膜附近的溶解和悬浮溶质转运机理的预测和控制(即扩散和对流传质)至关重要。在这里,我们专注于材料的开发,以解决与聚合物的液体膜过滤的相对较差的选择性,并讨论运输限制的关键方面。机器学习可以帮助优化膜结构设计和运输条件,以改善膜过滤性能。

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