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冷冻沸石 X 和 A 用于沼气升级。

Freeze Granulated Zeolites X and A for Biogas Upgrading.

机构信息

Division of Materials Science, Luleå University of Technology, 97187 Luleå, Sweden.

出版信息

Molecules. 2020 Mar 18;25(6):1378. doi: 10.3390/molecules25061378.

Abstract

Biogas is a potential renewable energy resource that can reduce the current energy dependency on fossil fuels. The major limitation of utilizing biogas fully in the various applications is the presence of a significant volume fraction of carbon dioxide in biogas. Here, we used adsorption-driven CO separation using the most prominent adsorbents, NaX (faujasite) and CaA (Linde Type A) zeolites. The NaX and CaA zeolites were structured into hierarchically porous granules using a low-cost freeze granulation technique to achieve better mass transfer kinetics. The freeze granulation processing parameters and the rheological properties of suspensions were optimized to obtain homogenous granules of NaX and CaA zeolites 2-3 mm in diameter with macroporosity of 77.9% and 68.6%, respectively. The NaX and CaA granules kept their individual morphologies, crystallinities with a CO uptake of 5.8 mmol/g and 4 mmol/g, respectively. The CO separation performance and the kinetic behavior were estimated by breakthrough experiments, where the NaX zeolite showed a 16% higher CO uptake rate than CaA granules with a high mass transfer coefficient, 1.3 m/s, compared to commercial granules, suggesting that freeze-granulated zeolites could be used to improve adsorption kinetics and reduce cycle time for biogas upgrading in the adsorption swing technology.

摘要

沼气是一种有潜力的可再生能源,可以减少当前对化石燃料的能源依赖。在各种应用中充分利用沼气的主要限制因素是沼气中存在大量二氧化碳。在这里,我们使用最突出的吸附剂 NaX(方钠石)和 CaA(Linde Type A)沸石,通过吸附驱动的 CO 分离来利用沼气。NaX 和 CaA 沸石通过低成本的冷冻造粒技术被结构化成为具有分级多孔结构的颗粒,以实现更好的传质动力学。优化了冷冻造粒加工参数和悬浮液的流变性能,以获得直径为 2-3 毫米、具有 77.9%和 68.6%大孔率的 NaX 和 CaA 沸石均匀颗粒,分别。NaX 和 CaA 颗粒保持了其各自的形态、结晶度,CO 吸附量分别为 5.8mmol/g 和 4mmol/g。通过穿透实验估计了 CO 分离性能和动力学行为,其中 NaX 沸石的 CO 吸收速率比 CaA 颗粒高 16%,具有 1.3m/s 的高传质系数,与商业颗粒相比,这表明冷冻造粒沸石可用于改善吸附动力学并缩短吸附变压技术中沼气升级的循环时间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a00/7175154/3f92e01768ab/molecules-25-01378-g001.jpg

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