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冷等离子体对用于CO和CH混合物的SAPO-34膜的性能及效率提升

Performance and Enhanced Efficiency Induced by Cold Plasma on SAPO-34 Membranes for CO and CH Mixtures.

作者信息

Gorky Fnu, Storr Vashanti, Jones Grace, Nambo Apolo, Jasinski Jacek B, Carreon Maria L

机构信息

Ralph E. Martin Department of Chemical Engineering, University of Arkansas, Fayetteville, AR 72701, USA.

Bert Thin Films, LLC., 625 Myrtle St, Louisville, KY 40298, USA.

出版信息

Membranes (Basel). 2024 Aug 20;14(8):178. doi: 10.3390/membranes14080178.

Abstract

In this study, we investigate the influence of cold-plasma-induced enhanced performance and efficiency of SAPO-34 membranes in the separation of CO and CH mixtures. Placing the herein presented research in a broader context, we aim to address the question of whether cold plasma can significantly impact the membrane performance. We subjected SAPO-34 membranes to plasma mild disturbances and analyzed their performance in separating CO and CH. Our findings reveal a notable enhancement in membrane efficiency and sustained performance when exposed to cold plasma. The pulsed plasma separation displayed improved structural integrity, and the experimental results indicated that the linear structure of CO₂ facilitates the distortion of electron clouds in response to the electric field, a property known as polarizability, which aids in effective separation. Plausible mechanistic insight indicated that the intermolecular forces facilitated an integral role in SAPO-34 membranes exhibiting strong electrostatic interactions. In conclusion, our research highlights the potential of cold plasma as a promising technique for improving the performance of SAPO-34 membranes in gas mixtures at atmospheric pressures, providing valuable insights for optimizing membrane technology in carbon capture and gas separation applications.

摘要

在本研究中,我们探究了冷等离子体诱导增强的SAPO - 34膜在分离CO和CH混合物时的性能和效率。将本文所呈现的研究置于更广泛的背景下,我们旨在解决冷等离子体是否能显著影响膜性能这一问题。我们使SAPO - 34膜受到等离子体轻度扰动,并分析它们在分离CO和CH时的性能。我们的研究结果表明,当暴露于冷等离子体时,膜效率有显著提高且性能得以维持。脉冲等离子体分离显示出结构完整性得到改善,实验结果表明CO₂的线性结构有助于其电子云在电场作用下发生畸变,这一特性称为极化率,有助于有效分离。合理的机理洞察表明,分子间力在SAPO - 34膜表现出强静电相互作用中发挥了不可或缺的作用。总之,我们的研究突出了冷等离子体作为一种有前景的技术在大气压下改善SAPO - 34膜在气体混合物中性能的潜力,为优化碳捕获和气体分离应用中的膜技术提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c81/11356667/db8292fd0bfb/membranes-14-00178-g001.jpg

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