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◆ Advanced Functional Materials2026-03-31· Adsorption

Kinetic Effect Intensified Thermodynamic Separation of Ethane via Low‐Cost but Effective Metal‐Organic Frameworks for Ethylene Purification

Xiaoyu Lou, Xinyi Ke, Miaomiao Cui, Xiaoyan Chen, Ting Qiu, Jie Chen

原始摘要(英文原文)· Original abstract
ABSTRACT Ethylene purification via ethane/ethylene (C 2 H 6 /C 2 H 4 ) adsorptive separation faces challenges of the trade‐off between selectivity and desorption energy consumption, and high adsorbent costs. Herein, we propose a strategy integrating localized kinetic confinement effects with thermodynamic equilibrium separation to design a low‐cost nickel‐based metal‐organic framework (PY‐MOF) using affordable ligands. PY‐MOF features a rhombic pore structure with accessible N/O adsorption sites at the corners. Amplifying the slight molecular size and configuration difference, it achieves kinetic discrimination, while synergistic moderate C‐H∙∙∙N/O hydrogen bonding and weak van der Waals interactions enhance thermodynamic affinity toward C 2 H 6 . At 298 K and 1 bar, PY‐MOF exhibits an ideal adsorption solution theory (IAST) selectivity of 2.46 for C 2 H 6 /C 2 H 4 (50/50, v/v). Dynamic breakthrough experiments demonstrate one‐step production of polymer‐grade ethylene from binary mixtures, achieving a maximum productivity of 19.27 L kg −1 . More importantly, it costs only 7.82 USD kg −1 , with a performance/cost ratio of 1.13, could be efficiently regenerated at 80°C for 3 h, and maintains excellent stability across wide humidity, solvent, and pH ranges. This work provides a benchmark low‐cost, high‐performance MOF for challenging C 2 H 6 /C 2 H 4 separations, offering a new paradigm for adsorbent design in C 2 H 4 purification.
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Kinetic Effect Intensified Thermodynamic Separation of Ethane via Low‐Cost but Effective Metal‐Organic Frameworks for Ethylene Purification — 科研速览 Science Skim