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Optimized cesium and potassium ion-exchanged zeolites A and X granules for biogas upgrading

机译:优化的铯和钾离子交换沸石A和X颗粒用于沼气升级

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摘要

Partially ion-exchanged zeolites A and X binderless granules were evaluated for CO2 separation from CH4. The CO2 adsorption capacity and CO2-over-CH4 selectivity of binderless zeolites A and X granules were optimized by partial exchange of cations with K+ and Cs+, while retaining the mechanical strength of 1.3 MPa and 2 MPa, respectively. Single gas CO2 and CH4 adsorption isotherms were recorded on zeolites A and X granules and used to estimate the co-adsorption of CO2-CH4 using ideal adsorbed solution theory (IAST). The IAST co-adsorption analysis showed that the partially ion-exchanged binderless zeolites A and X granules had a high CO2-over-CH4 selectivity of 1775 and 525 respectively, at 100 kPa and 298 K. Optimally ion-exchanged zeolite X granules retained 97% of CO2 uptake capacity, 3.8 mmol g(-1), after 5 breakthrough adsorption-desorption cycles while for zeolite A ion-exchanged granules the reduction in CO2 uptake capacity was found to be 18%; CO2 uptake capacity of 3.4 mmol g(-1). The mass transfer analysis of breakthrough experimental data showed that the ion-exchanged zeolite X had offered a higher mass transfer coefficient, (k) through the adsorption column compared to zeolite A; 0.41 and 0.13 m s(-1) for NaK4.5Cs0.3X and CaK(2.5)Cs(0.2)A, respectively.
机译:评价部分离子交换的沸石A和X粘合剂颗粒用于从CH 4的CO 2分离。通过用K +和Cs +部分交换阳离子的粘合剂沸石A和X颗粒的CO 2吸附能力和CO 2 ov-CH4选择性,同时保留1.3MPa和2MPa的机械强度。在沸石A和X颗粒上记录单气CO 2和CH 4吸附等温物,并用于使用理想的吸附溶液理论(IAST)来估计CO2-CH4的共吸收。 IAST共吸附分析表明,部分离子交换的粘合剂沸石A和X颗粒分别具有1775和525的高CO 2 ov-CH 4选择性,在100kPa和298k.最佳离子交换的沸石x颗粒保留97 CO2摄取容量的百分比3.8mmol g(-1),在5次突破性吸附 - 解吸循环之后,对于沸石进行离子交换的颗粒,CO 2摄取能力的降低被发现为18%; CO2摄取容量为3.4mmol g(-1)。与沸石A相比,突破性实验数据的传质分析表明,离子交换的沸石X通过吸附塔提供更高的质量转移系数,(k);对于NAK4.5CS0.3X和CAK(2.5)CS(0.2)A的0.41和0.13 m S(-1)。

著录项

  • 来源
    《RSC Advances》 |2018年第65期|共9页
  • 作者单位

    Lulea Univ Technol Div Mat Sci S-97187 Lulea Sweden;

    Lulea Univ Technol Div Mat Sci S-97187 Lulea Sweden;

    Tech Univ Denmark Dept Energy Convers DK-4000 Roskilde Denmark;

    Lulea Univ Technol Div Mat Sci S-97187 Lulea Sweden;

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