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Precombustion CO2 capture using a hybrid process of adsorption and gas hydrate formation

机译:使用吸附和气体水合物形成的混合过程来捕获燃烧前的二氧化碳

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摘要

In this study, a fixed bed of pulverized coal particles was employed to enhance the precombustion CO2 capture from fuel gas (40 mol% CO2/H-2). The performance of the HAHF (hybrid adsorption-hydrate formation) process occurred in the fixed bed was evaluated at different liquid saturations and operation pressures. The experiments were carried out at 274.2 K with the pressure varying from 3.0 MPa to 6.0 MPa. 1.0 mol% THF (tetrahydrofuran.) solution instead of liquid water was used to saturate the fixed bed and reduce the hydrate phase equilibrium conditions. The results indicated that gas hydrate nucleation in the fixed bed was quickly induced by gas adsorption in coal particles. The HAHF process was dominated by hydrate formation as the fixed bed saturation increased, and the CO2 recovery and separation factor were increased. Gas consumption during the HAHF process was promoted with the increase of operation pressure, but the CO2 recovery and separation factor decreased. In the fixed bed of coal particles saturated by 1.0 mol% THF solution the highest gas uptake obtained was 51.9 mmol of gas/mol of water, which was comparable with that obtained in the fixed bed of silica sand in the presence of 5.53 mol% THF. Therefore, compared with the hydrate based gas separation process, the hybrid adsorption-hydrate formation process proposed in this study could be a viable option for CO2 capture from fuel gas. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,采用了粉煤颗粒的固定床来增强从燃气(40 mol%CO2 / H-2)中燃烧前的二氧化碳捕获。在不同的液体饱和度和操作压力下,对固定床中发生的HAHF(混合吸附水合物形成)过程的性能进行了评估。实验在274.2 K下进行,压力从3.0 MPa到6.0 MPa不等。用1.0mol%的THF(四氢呋喃)溶液代替液态水饱和固定床并降低水合相平衡条件。结果表明,固定床中的天然气水合物成核作用是由煤颗粒中的气体吸附引起的。随着固定床饱和度的增加,HAHF过程受水合物形成的支配,而CO2的回收率和分离系数也增加。随着操作压力的增加,HAHF工艺过程中的气体消耗有所增加,但CO2的回收率和分离系数却降低了。在用1.0 mol%THF溶液饱和的煤颗粒固定床中,获得的最高气体吸收量为51.9 mmol气体/ mol水,这与在5.53 mol%THF存在下在硅砂固定床中获得的气体吸收量相当。 。因此,与基于水合物的气体分离工艺相比,本研究中提出的混合吸附水合物形成工艺可能是从燃气中捕获二氧化碳的可行选择。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Energy》 |2016年第1期|621-629|共9页
  • 作者单位

    Chongqing Univ, Key Lab Low Grade Energy Utilizat Technol & Syst, Minist Educ China, Chongqing 400044, Peoples R China|Chongqing Univ, State Key Lab Coal Mine Disaster Dynam & Control, Chongqing 400044, Peoples R China;

    Chongqing Univ, Key Lab Low Grade Energy Utilizat Technol & Syst, Minist Educ China, Chongqing 400044, Peoples R China;

    Chongqing Univ, State Key Lab Coal Mine Disaster Dynam & Control, Chongqing 400044, Peoples R China;

    Chongqing Univ, Key Lab Low Grade Energy Utilizat Technol & Syst, Minist Educ China, Chongqing 400044, Peoples R China;

    Chongqing Univ, State Key Lab Coal Mine Disaster Dynam & Control, Chongqing 400044, Peoples R China;

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

    Gas hydrates; Carbon dioxide capture; Precombustion; Porous coal particles; Adsorption; Gas separation;

    机译:天然气水合物;二氧化碳捕集;燃烧;多孔煤颗粒;吸附;气体分离;

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