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Substantial breakthroughs on function-led design of advanced materials used in mixed matrix membranes (MMMs): A new horizon for efficient CO_2 separation

机译:混合基质膜(MMM)中使用的先进材料的功能导向设计的重大突破:有效分离CO_2的新视野

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Mixed matrix membranes (MMMs) create a new horizon for developing novel materials with desired separation properties, since conventional membranes are insufficient to fully accommodate in industrial applications and process intensification. A broad area of researches has been dedicated to develop MMMs for CO2 separation. MMMs are normally comprised of different kinds of fillers embedded into the polymer matrices with a final goal of surpassing the Robeson's upper boundary not only by controlling shortcomings of the available organic and inorganic membrane materials, but also through a fast upgrading of them. One of the most important aspects in the development of MMMs is an appropriate material selection for both matrix and dispersed phases to eliminate the non-ideal morphologies created at their interfaces. Development of high performance membrane materials with new functional groups and new chemistries has attracted much attention over the past few years. To have an impact on real implementations, successful MMMs are necessary to optimize multiple functions besides high porous structure and surface area, such as processability, stability, sorption kinetics, mechanical and thermal properties, while simultaneously the economic issues must be taking into account. Although, during the long years passed from applying the MMMs for CO2 separation, various kinds of conventional porous/dense materials have made significant contributions, many novel materials have rapidly emerged over the past five years. These improvements include the extensive use of a wide range of functionalized materials, which have inexorably entered the scene to substantially promote the separation performance. Today, the range of conceivable functions for porous materials is much broader than foretime. This may be indebted to the prompt progresses in design and computing the new functions/structures, which encourages the emergence of a new way to correctly identify the best material for the specific gas separation targets. Advanced functionalized MMMs generate substantial breakthroughs in tailoring successful CO2-selective membranes and recent progresses in functional materials create many attractive opportunities/perspectives. This review is especially devoted to describe the recent developments in methods proposed to preserve/overcome the afore-mentioned fabrication challenges of MMMs and also the progress in advanced functionalized materials used in the MMMs for CO2 separation during the recent years.
机译:混合基质膜(MMM)为开发具有所需分离特性的新型材料开辟了新视野,因为常规膜不足以完全适应工业应用和工艺强度。广泛的研究致力于开发用于CO2分离的MMM。 MMM通常由嵌入聚合物基体中的不同种类的填料组成,其最终目标不仅是通过控制可用的有机和无机膜材料的缺点,而且还要通过对其的快速升级来超越Robeson的上限。 MMM开发中最重要的方面之一是为基质和分散相选择合适的材料,以消除在界面处产生的非理想形态。在过去的几年中,具有新的官能团和新的化学性质的高性能膜材料的开发引起了很多关注。为了对实际实现产生影响,成功的MMM除了优化多孔结构和表面积(如可加工性,稳定性,吸附动力学,机械和热性能)外,还必须优化多种功能,同时还必须考虑经济问题。尽管在将MMM应用于CO2分离的漫长岁月中,各种常规的多孔/致密材料做出了巨大贡献,但在过去五年中,许多新型材料迅速出现。这些改进包括广泛使用各种功能化材料,这些材料无可避免地进入了现场,从而大大提高了分离性能。如今,多孔材料可想到的功能范围比以前广得多。这可能与设计和计算新功能/结构的迅速进展有关,这鼓励了一种新方法的出现,该方法可以正确地确定用于特定气体分离目标的最佳材料。先进的功能化MMM在定制成功的CO2选择性膜方面取得了重大突破,而功能材料的最新进展创造了许多诱人的机会/前景。这篇综述特别致力于描述为保护/克服MMM的上述制造挑战而提出的方法的最新发展,以及近年来MMM中用于CO2分离的先进功能材料的进展。

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