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首页> 外文期刊>Journal of Solid State Chemistry >A novel fructose-based adsorbent with high capacity and its ethane-selective adsorption property
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A novel fructose-based adsorbent with high capacity and its ethane-selective adsorption property

机译:一种具有高容量及其乙烷选择性吸附性的新型果糖基吸附剂

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Separation of ethane/ethylene mixture at normal temperature and pressure is a challenging issue in the petrochemical industry. Herein, we synthesized Fructose-based carbon materials (C-Frus) with characteristic of ethane-selective adsorption for the energy-effective separation of ethane and ethylene. The as-synthesized sample C-Fru-4-700 exhibited narrow micropore size distribution and high micropore volume. More importantly, these samples presented preferential adsorption of C2H6 over C2H4, of which the ethane capacity of the sample C-Fru-4-700 reached as high as 7.94 mmol/g at 25 degrees C and 1001(Pa, much higher than that of many MOFs, and its selectivity for equimolar C2H6/C2H4 mixture reached 4 at low pressure. These excellent properties made C2H6/C2H4 mixture be well separated by fixed bed at 25 degrees C. Computational simulations revealed that the surface O-mte1, O-site2 and O-site3 sites of the materials are the favorably adsorptive sites of C2H6. Fructose-based carbon materials are promising for separation of ethane/ethylene mixture at normal condition.
机译:在常温和压力下分离乙烷/乙烯混合物是石油化工行业的一个具有挑战性的问题。在此,我们合成果糖基碳材料(C-FRU),具有乙烷选择性吸附的特征,用于乙烷和乙烯的能量有效分离。 AS合成的样品C-FRU-4-700表现出窄的微孔尺寸分布和高微孔体积。更重要的是,这些样品呈现了C2H6的优先吸附C2H6,其中样品C-FRU-4-700的乙烷能力在25摄氏度下达到7.94mmol / g(PA,远高于许多MOF和其对等摩尔C2H6 / C2H4混合物的选择性在低压下达到4。这些优异的性质使C 2 H 6 / C 2 H 4混合物在25摄氏度下通过固定床分离。计算模拟显示表面O-MTE1,O-Site2和O-Site3材料的基地是C2H6的有利吸附位点。基于果糖基碳材料在正常条件下具有乙烷/乙烯混合物的分离。

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