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Dynamic Performance of Biomass-Based Carbons for CO2/CH4 Separation. Approximation to a Pressure Swing Adsorption Process for Biogas Upgrading

机译:基于生物质的碳在CO2 / CH4分离中的动态性能。逼近变压吸附过程的沼气升级

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摘要

Physical adsorption-based processes such as pressure swing-adsorption (PSA) constitute an alternative to selectively adsorb CO2 from biogas streams: There is' abundant work regarding the equilibrium of adsorption of pure CH4 and CO2 on different adsorbents. However, to design an adsorption process with a selected adsorbent it is very important to account for its dynamic behavior in a packed-bed. Thus, the performance of two biomass-based activated carbons (CS-CO2 and CS-H2O), previously prepared in our laboratory to separate CO2/CH4 has been evaluated. Full adsorption-desorption-cycles were: conducted at 30 degrees C (isothermal conditions) and different pressures (1, 3, 5, and 10 bar) feeding binary CO2/CH4 (50/50 vol %) mixtures to a purpose-built fixed-bed setup. A commercial activated carbon; Calgon BPL, was also evaluated for reference purposes. CO2 equilibrium uptakes were obtained from dynamic:breakthrough curves and proved to be maximum at 10 bar (5.14, 4.48, and 4.14 mol kg(-1) for CS-CO2, CS-H2O, and Calgon BPL, respectively). However, the CO2/CH4 separation efficiency, according to the difference in breakthrough times between CH4 and CO2 is very limited at 10 bar. A combined analysis of the productivity and purity of CH4 along with CO2 working capacity-derived from dynamic experiments indicates that our biomass-based activated carbons would be better candidate materials for the CO2/CH4 separation at a pressure of 5 bar than the commercial activated carbon Calgon BPL.
机译:基于物理吸附的过程(例如变压吸附(PSA))构成了从沼气中选择性吸附CO2的替代方法:关于纯CH4和CO2在不同吸附剂上的吸附平衡,有大量工作要做。但是,要设计使用所选吸附剂的吸附工艺,考虑其在填充床中的动态行为非常重要。因此,已经评估了先前在我们实验室中制备的用于分离CO2 / CH4的两种基于生物质的活性炭(CS-CO2和CS-H2O)的性能。完整的吸附-解吸循环:在30摄氏度(等温条件)和不同压力(1、3、5和10巴)下进行,将二元CO2 / CH4(50/50体积%)混合物供入固定的固定装置床设置。商业活性炭;还对Calgon BPL进行了评估,以供参考。从动态突破曲线获得了CO2平衡吸收,并证明在10 bar时最大(CS-CO2,CS-H2O和Calgon BPL分别为5.14、4.48和4.14 mol kg(-1))。但是,根据CH4和CO2穿透时间的差异,CO2 / CH4的分离效率非常有限,为10 bar。通过动态实验得出的CH4的生产率和纯度以及CO2的工作能力的综合分析表明,在5 bar的压力下,我们的基于生物质的活性炭比市售的活性炭更适合作为CO2 / CH4分离的候选材料。卡尔冈BPL。

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  • 来源
    《Energy & fuels》 |2016年第6期|5005-5015|共11页
  • 作者单位

    INCAR CSIC, Inst Nacl Carbon, Apartado 73, Oviedo 33080, Spain;

    INCAR CSIC, Inst Nacl Carbon, Apartado 73, Oviedo 33080, Spain|Heriot Watt Univ, Sch Engn & Phys Sci, CICCS, Edinburgh EH14 4AS, Midlothian, Scotland;

    INCAR CSIC, Inst Nacl Carbon, Apartado 73, Oviedo 33080, Spain|Norwegian Univ Sci & Technol, Dept Chem Engn, Sem Saelands Vei 4, NO-7491 Trondheim, Norway;

    INCAR CSIC, Inst Nacl Carbon, Apartado 73, Oviedo 33080, Spain;

    INCAR CSIC, Inst Nacl Carbon, Apartado 73, Oviedo 33080, Spain;

  • 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
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  • 入库时间 2022-08-18 00:39:59

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