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乙烷选择性掺杂氟活性炭吸附剂在环境条件下从乙烷/乙烯混合物中生产高纯度乙烯

High-Purity Ethylene Production from Ethane/Ethylene Mixtures at Ambient Conditions by Ethane-Selective Fluorine-Doped Activated Carbon Adsorbents.

作者信息

Anwar Fahmi, Varghese Anish Mathai, Kuppireddy Suresh, Gotzias Anastasios, Khaleel Maryam, Wang Kean, Karanikolos Georgios N

机构信息

Department of Chemical & Petroleum Engineering, Khalifa University, P.O. Box 127788, Abu Dhabi 127788, UAE.

Center for Catalysis and Separation (CeCaS), Khalifa University, P.O Box 127788, Abu Dhabi 127788, UAE.

出版信息

ACS Appl Mater Interfaces. 2025 Feb 5;17(5):8619-8633. doi: 10.1021/acsami.4c20772. Epub 2025 Jan 25.

Abstract

Energy-efficient separation of light alkanes from alkenes is considered as one of the most important separations of the chemical industry today due to the high energy penalty associated with the applied conventional cryogenic technologies. This study introduces fluorine-doped activated carbon adsorbents, where elemental fluorine incorporation into the carbon matrix plays a unique role in achieving high ethane selectivity. This enhanced selectivity arises from specific interactions between surface-doped fluorine atoms and ethane molecules, coupled with porosity modulation. Consequently, an equilibrium ethane/ethylene selectivity of as high as 3.9 at 298 K and 1 bar was achieved. Furthermore, polymer-grade ethylene (purity >99.99%) with a productivity of 1.6 mmol/g was obtained in a breakthrough run at ambient conditions from a binary ethane/ethylene (1/9 ) mixture. The ethane selectivity of the fluorine-doped carbons was further elucidated through Monte Carlo simulations and density contours of the adsorbed components. In addition to the high ethane selectivity, the adsorbents exhibited a hydrophobic surface, high stability under moisture, and excellent regenerability over multiple adsorption-desorption cycles under both equilibrium and dynamic conditions, demonstrating a sustainable performance.

摘要

由于与应用的传统低温技术相关的高能量消耗,从烯烃中高效分离轻质烷烃被认为是当今化学工业中最重要的分离过程之一。本研究介绍了氟掺杂活性炭吸附剂,其中碳基体中掺入的元素氟在实现高乙烷选择性方面发挥了独特作用。这种增强的选择性源于表面掺杂的氟原子与乙烷分子之间的特定相互作用,以及孔隙率调节。因此,在298K和1巴下实现了高达3.9的平衡乙烷/乙烯选择性。此外,在环境条件下,从二元乙烷/乙烯(1/9)混合物的突破实验中获得了生产率为1.6 mmol/g的聚合物级乙烯(纯度>99.99%)。通过蒙特卡罗模拟和吸附组分的密度等值线进一步阐明了氟掺杂碳的乙烷选择性。除了高乙烷选择性外,吸附剂还表现出疏水表面、在潮湿条件下的高稳定性以及在平衡和动态条件下多个吸附-解吸循环中的优异再生性,展现出可持续的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/809d/11803616/bd2cc57bd176/am4c20772_0001.jpg

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