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首页> 外文期刊>Energy & fuels >Effect of Ionic Liquid Impregnation in Highly Water-Stable Metal-Organic Frameworks, Covalent Organic Frameworks, and Carbon-Based Adsorbents for Post-combustion Flue Gas Treatment
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Effect of Ionic Liquid Impregnation in Highly Water-Stable Metal-Organic Frameworks, Covalent Organic Frameworks, and Carbon-Based Adsorbents for Post-combustion Flue Gas Treatment

机译:离子液体浸渍在高度稳定的金属有机骨架,共价有机骨架和碳基吸附剂中对燃烧后烟气的影响

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摘要

In this work, a comparative study on water-stable microporous adsorbents is conducted computationally in the quest of a suitable adsorbent for post-combustion CO2 capture. In this regard, three metal-organic frameworks (MOFs), two covalent organic frameworks (COFs), and a single-wall carbon nanotube (SWCNT) are investigated under the same flue gas conditions. The simulation results show that the pure component adsorption capacity for CO2, follows the order SWCNT InOF-1 COF-300 UiO-66 COF-108 ZIF-8 at post-combustion conditions. Further, these materials are impregnated with ionic liquids to examine the effect on the CO2, separation ability of these materials. The adsorption capacity enhances by incorporating ionic liquids, especially [EMIM] [SCN] compared to [EMIM] [BF4] as a result of a stronger interaction and being less bulky in nature. We further tested the effect of the presence of other components of flue gas on the selectivity of CO2, over N-2, and we found that the presence of SO2 and water vapor reduces the CO2, selectivity in all of the materials considered in this work. Performance in terms of CO2, selectivity of these materials is tested in the presence of all major components of flue gas, and we found that, under the same thermodynamic conditions, it follows the order InOF-1 COF-300 UiO-66 SWCNT COF-108 approximate to ZIF-8. The CO2/N-2 selectivity increases significantly after impregnating materials with ionic liquids. In the presence of water, InOF-1 completely discard N-2, showing infinitely large selectivity for CO2/N-2. In humid conditions, the difference in selectivity between pristine and composite materials decreases significantly.
机译:在这项工作中,对水稳定的微孔吸附剂进行了比较研究,以寻求适合燃烧后二氧化碳捕集的吸附剂。在这方面,在相同的烟气条件下研究了三个金属有机骨架(MOF),两个共价有机骨架(COF)和一个单壁碳纳米管(SWCNT)。模拟结果表明,在燃烧后条件下,纯组分对CO2的吸附能力遵循SWCNT> InOF-1> COF-300> UiO-66> COF-108> ZIF-8的顺序。此外,将这些材料用离子液体浸渍以检查对这些材料对CO 2的影响,分离能力。通过结合离子液体,尤其是[EMIM] [SCN],与[EMIM] [BF4]相比,由于相互作用更强,体积更小,因此可以提高吸附能力。我们进一步测试了烟气中其他成分的存在对N-2上方CO2选择性的影响,我们发现SO2和水蒸气的存在降低了本工作中考虑的所有材料的CO2选择性。 。在烟气的所有主要成分存在下测试了这些材料在CO2方面的性能,选择性,并且我们发现,在相同的热力学条件下,其遵循的顺序为InOF-1> COF-300> UiO-66> SWCNT> COF-108近似于ZIF-8。用离子液体浸渍材料后,CO2 / N-2选择性显着提高。在水的存在下,InOF-1会完全丢弃N-2,显示出对CO2 / N-2的无限大选择性。在潮湿条件下,原始材料与复合材料之间的选择性差异显着减小。

著录项

  • 来源
    《Energy & fuels》 |2019年第4期|3421-3428|共8页
  • 作者

    Maurya Manish; Singh Jayant K.;

  • 作者单位

    Indian Inst Technol Kanpur, Dept Chem Engn, Kanpur 208016, Uttar Pradesh, India;

    Indian Inst Technol Kanpur, Dept Chem Engn, Kanpur 208016, Uttar Pradesh, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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