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刚性层状超微孔材料中一氧化碳与甲烷的超高纯度及高产率分离

Ultra-High Purity and Productivity Separation of CO and CH from CH in Rigid Layered Ultramicroporous Material.

作者信息

Jin Yuanyuan, Ke Tian, Xu Guihong, Li Jinjian, Jiang Zhixin, Fan Rongrong, Zhang Zhiguo, Bao Zongbi, Ren Qilong, Yang Qiwei

机构信息

Key Laboratory of Biomass Chemical Engineering of Ministry of Education, College of Chemical and Biological Engineering, Zhejiang University, 310027 Hangzhou, Zhejiang, China.

Institute of Zhejiang University-Quzhou, 324000 Quzhou, Zhejiang, China.

出版信息

ACS Cent Sci. 2024 Sep 20;10(10):1885-1893. doi: 10.1021/acscentsci.4c01125. eCollection 2024 Oct 23.

Abstract

Efficiently obtaining both high-purity gas-phase and adsorbed-phase products in a single physisorption process presents the challenge of simultaneously achieving high selectivity and uptake and rapid diffusion in adsorbents. With a focus on natural gas purification and high-purity acetylene production, we report for the first time that the synergistic ligand/anion binding mode and multiple diffusion pathways in a robust 2D layered ultramicroporous framework (ZUL-100) enable unprecedented carbon dioxide/methane and acetylene/methane separation performance. Taking advantage of its rich anion, functional ligand ,and rigid 3D interpenetrated ultramicroporous channels, ZUL-100 achieved record IAST selectivities for equimolar carbon dioxide/methane (3.2 × 10) and acetylene/methane (1.7 × 10) mixtures, accompanied by record dynamic uptakes of carbon dioxide (3.10 mmol/g) and acetylene (4.79 mmol/g), respectively. The strong affinity and fast mass transfer of carbon dioxide and acetylene on ZUL-100 were systematically elucidated by a combination of in situ FTIR, single-crystal XRD, kinetic tests, and DFT-D adsorption/diffusion modeling. In particular, high-purity (≥99.999%) methane and carbon dioxide (acetylene) can both be obtained on ZUL-100 through a single adsorption-desorption cycle, with exceptional productivity (2.81-4.22 mmol/g of methane, 2.96 mmol/g of carbon dioxide, and 4.31 mmol/g of acetylene) and high yield (95.5% for carbon dioxide and 90.0% for acetylene).

摘要

在单一物理吸附过程中高效获取高纯度气相和吸附相产物,面临着在吸附剂中同时实现高选择性、高吸附量以及快速扩散的挑战。以天然气净化和高纯度乙炔生产为重点,我们首次报道了一种坚固的二维层状超微孔框架材料(ZUL-100)中协同的配体/阴离子结合模式和多种扩散途径,实现了前所未有的二氧化碳/甲烷以及乙炔/甲烷分离性能。利用其丰富的阴离子、功能性配体以及刚性的三维互穿超微孔通道,ZUL-100在等摩尔二氧化碳/甲烷(3.2×10)和乙炔/甲烷(1.7×10)混合物体系中实现了创纪录的IAST选择性,同时分别实现了二氧化碳(3.10 mmol/g)和乙炔(4.79 mmol/g)的创纪录动态吸附量。通过原位傅里叶变换红外光谱、单晶X射线衍射、动力学测试以及密度泛函理论-色散校正(DFT-D)吸附/扩散模拟相结合的方法,系统地阐明了二氧化碳和乙炔在ZUL-100上的强亲和力和快速传质过程。特别地,通过单次吸附-解吸循环,在ZUL-100上能够同时获得高纯度(≥99.999%)的甲烷和二氧化碳(乙炔),具有优异的生产率(甲烷为2.81 - 4.22 mmol/g,二氧化碳为2.96 mmol/g,乙炔为4.31 mmol/g)和高收率(二氧化碳为95.5%,乙炔为90.0%)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abcb/11503503/7741fc4290c3/oc4c01125_0001.jpg

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