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The rational design of Li-doped nitrogen adsorbents for natural gas purification

机译:天然气净化锂掺杂氮吸附剂的合理设计

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摘要

Separation of nitrogen (N-2) and methane (CH4) is one of the most challenging and energy-intensive processes in the natural gas industry, due to their close physico-chemical properties. The quest for an effective N-2-selective adsorbent has long been the focus of research; however, the results have been sparse. In this work, a first-principle study has been used to construct and investigate Li-doped polycyclic aromatic hydrocarbons (PAHs) for N-2 rejection in natural gas purification. We doped lithium on a series of linear/nonlinear PAHs consisting of two to six benzene rings. The adsorption affinity of the Li-doped organic molecular systems toward N-2 and CH4 was evaluated by calculating the interaction energy using density functional theory. From the gas adsorption selectivities for different Li-doped PAHs, Li-doped phenanthrene and chrysene showed the highest N-2 over CH4 equilibrium selectivities, with values of 119.7 and 80.8, respectively. It was found that the Li atom enabled the pi bond of the aromatic substrate to interfere with the N-2 lowest unoccupied molecular orbital, resulting in strong physisorption of N-2. These results indicate the high potential of Li-doped phenanthrene and chrysene for N-2 removal from natural gas.
机译:氮(N-2)和甲烷(CH4)的分离是天然气工业中最具挑战性和能源密集型的过程之一,因为它们具有密切的物理化学性质。寻找有效的N-2选择性吸附剂一直是研究的重点;然而,结果并不多见。在这项工作中,第一性原理研究已被用于构建和研究掺锂多环芳烃(PAHs),用于天然气净化中的N-2抑制。我们在一系列由两到六个苯环组成的线性/非线性多环芳烃上掺杂锂。利用密度泛函理论计算了锂掺杂有机分子体系对N-2和CH4的吸附亲和力。从对不同掺锂多环芳烃的气体吸附选择性来看,掺锂菲和氯代芳烃的N-2平衡选择性最高,分别为119.7和80.8。研究发现,锂原子使芳香族底物的π键干扰了N-2最低未被占据的分子轨道,导致N-2的强物理吸附。这些结果表明,掺锂的菲和氯乙烯对天然气中N-2的去除具有很高的潜力。

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    South China Normal Univ Sch Chem MOE Key Lab Theoret Chem Environm Guangzhou 510006 Peoples R China;

    Univ Melbourne Dept Chem Engn Parkville Vic 3010 Australia;

    South China Normal Univ Sch Chem MOE Key Lab Theoret Chem Environm Guangzhou 510006 Peoples R China;

    Univ Western Australia Ctr Energy Dept Chem Engn 35 Stirling Highway Crawley WA 6009 Australia;

    Univ Akron Dept Polymer Sci Akron OH 44325 USA;

    City Univ Hong Kong Sch Energy &

    Environm Kowloon Tat Chee Ave Hong Kong Peoples R China;

    Univ Western Australia Ctr Energy Dept Chem Engn 35 Stirling Highway Crawley WA 6009 Australia;

    Univ Western Australia Ctr Energy Dept Chem Engn 35 Stirling Highway Crawley WA 6009 Australia;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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