深共晶溶剂基支撑液膜的研究进展与挑战

Muhammad Mubashir, Fernanda Neira d’Angelo, F. Gallucci
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引用次数: 3

摘要

摘要近年来,基于深共晶溶剂(DESs)的支撑液膜(SLMs)因其具有低质量传输阻力、高性能、易于放大、低成本和操作简单等显著优点,其制备研究得到了极大的发展。然而,基于DES的slm的制造是具有挑战性的,并且高度依赖于制造参数:DES性能和膜支撑的性能。随后,制备方法、浸渍、压力浸渍和真空过滤也影响了des基slm在液气分离中的渗透性能。此外,SLM耐久性受DES性能和工艺参数的影响,包括:温度、压力和进料成分。首先,本文综述了基于des的slm的研究进展和制备方法。随后,它提出了不同策略的观点,使用DESs作为一个独特的可调平台,设计先进的slm用于液体和气体分离的文献报道。在接下来的步骤中,详细描述了slm膜在液体和气体分离方面的性能。在面临挑战之前,还强调了工艺参数对基于des的slm的影响。最后,指出了未来的研究机遇和面临的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent Advances and Challenges of Deep Eutectic Solvent based Supported Liquid Membranes
ABSTRACT In the past few years, research on the fabrication of deep eutectic solvents (DESs)-based supported liquid membranes (SLMs) is increasing tremendously due to their significant advantages such as low mass transport resistance, high performance, easy scale-up, low cost and simple operation. However, fabrication of DES-based SLMs is challenging and highly dependent on the fabrication parameters: DES properties and properties of membrane supports. Subsequently, the fabrication methods, immersion, pressure-based impregnation and vacuum filtration also affect the permeation performance of DES-based SLMs in liquids and gases separation. Furthermore, the SLM durability is influenced by the DES properties and process parameters including: temperature, pressure, and feed composition. Firstly, present work reviews the current progress and fabrication of DES-based SLMs. Subsequently, it presents a perspective on different strategies that use DESs as a unique tunable platform to design advanced SLMs for liquids and gases separation reported in the literature. In the next step, performances of the SLMs membranes for liquids and gases separation are described in details. The effects of process parameters on DES-based SLMs are also highlighted prior to the challenges. Lastly, challenges and future research opportunities are highlighted.
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