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首页> 外文期刊>RSC Advances >Multi-factor study of the effects of a trace amount of water vapor on low concentration CO2 capture by 5A zeolite particles
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Multi-factor study of the effects of a trace amount of water vapor on low concentration CO2 capture by 5A zeolite particles

机译:用5A沸石颗粒捕获痕量水蒸气痕量水蒸气的多因素研究

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摘要

Water vapor is ubiquitous and affects the performance of an adsorbent. In this work, a grand-canonical Monte Carlo method (GCMC) combining with dispersion-corrected density functional theory (DC-DFT) calculation is adopted to investigate the effect of a trace amount of water vapor on low concentration CO2 capture in 5A zeolite particles. The force field parameters for the interactions among CO2, water, and 5A zeolite are obtained via DC-DFT calculations. The effects of the charges of water molecules on the CO2 and N-2 adsorption amounts and the selectivity of the CO2/(N-2 + O-2) gas mixture under different trace amounts of water vapor ranging from 0.05 ppm to 5 ppm are studied. The results show that the presence of the water vapor in 5A zeolite particles increases or decreases the CO2 adsorption amount, which is strongly determined by the trace amount of water. Specifically, when the water vapor concentration is less than 0.1 ppm, the CO2 adsorption amount is increased by 0.7-53.4%, whereas when the water vapor concentration is greater than 0.3 ppm, the amount of adsorbed CO2 decreases, with the reduction proportional to the amount of trace water. However, the N-2 adsorption amount and the selectivity of the CO2/(N-2 + O-2) gas mixture decrease with an increasing amount of trace water. This indicates that the electrostatic interactions induced by the water molecules are the dominant factor influencing the CO2 and N-2 adsorption amount and the selectivity of the CO2/(N-2 + O-2) gas mixture. Therefore, to achieve the desired adsorption performance, a trace amount of water vapor (<0.1 ppm) is recommended for CO2 adsorption, whereas low trace amounts of water vapor (<0.1 ppm) are also recommended for the selectivity of the CO2/(N-2 + O-2) gas mixture in the 5A zeolite particle.
机译:水蒸气普遍存在,影响吸附剂的性能。在这项工作中,采用了一种与色散校正的密度泛函理论(DC-DFT)计算组合的宏观规范的蒙特卡罗方法(GCMC)来研究痕量水蒸气在5A沸石颗粒中捕获的痕量水蒸气的影响。通过DC-DFT计算获得CO 2,水和5A沸石之间相互作用的力场参数。水分子电荷对CO2和N-2吸附量的影响以及CO 2 /(N-2 + O-2)气体混合物在不同痕量的水蒸气下的选择性范围为0.05ppm至5ppm研究过。结果表明,5A沸石颗粒中的水蒸气的存在增加或降低CO 2吸附量,这通过痕量的水强烈地确定。具体地,当水蒸气浓度小于0.1ppm时,CO 2吸附量增加0.7-53.4%,而当水蒸气浓度大于0.3ppm时,吸附的CO2的量减少,减少与痕量水量。然而,N-2吸附量和CO 2 /(N-2 + O-2)气体混合物的选择性随着痕量的痕量水而降低。这表明水分子诱导的静电相互作用是影响CO2和N-2吸附量的显性因素和CO 2 /(N-2 + O-2)气体混合物的选择性。因此,为了达到所需的吸附性能,建议使用痕量的水蒸气(<0.1ppm)用于CO 2吸附,而低痕量的水蒸气(<0.1ppm)也建议用于CO2 /(n -2 + O-2)5A沸石颗粒中的气体混合物。

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  • 来源
    《RSC Advances》 |2020年第11期|共9页
  • 作者单位

    Northwestern Polytech Univ Sch Aeronaut Xian 710072 Shaanxi Peoples R China;

    Xi An Jiao Tong Univ Sch Energy &

    Power Engn MOE Key Lab Thermofluid Sci &

    Engn Xian 710049 Shaanxi Peoples R China;

    Northwestern Polytech Univ Sch Aeronaut Xian 710072 Shaanxi Peoples R China;

    Newcastle Univ Sch Engn Newcastle Upon Tyne NE1 7RU Tyne &

    Wear England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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