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Optimizing Purity and Recovery of Hydrogen from Syngas by Equalized Pressure Swing Adsorption using Palm Kernel Shell Activated Carbon Adsorbent

机译:使用棕榈籽壳活性炭吸附剂通过均衡的压力波动吸附优化合成气纯度和氢气

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This paper provides with a first assessment on the sustainability of Pressure Swing Adsorption (PSA) as a valid option for Carbon Dioxide (CO2) capture in power plant. PSA is a well-established gas separation technique in air separation, gas purification and CO2 capturing. The PSA system involved adsorption process which the adsorbent play an extremely important in gas separation. The adsorbent must be porous and preferably having a large surface area per unit mass. Activated Palm kernel activated carbon (APKS) has been used in this study for binary mixture gas separation involved Carbon dioxide and Hydrogen (CO2/H2)., the characterization study reveals that the specific surface area of the prepared adsorbent is around 697.67m~2/g with pore volume and pore size of 0.35m~3/g and 2.01nm respectively. The average particle size of the adsorbent sample is recorded as 0.11 μm. Scanning Electron Microscope (SEM) and X-Ray Diffraction (XRD) analysis uncovers the spongy structure of the highly amorphous ACPKS. Breakthrough studies at varying adsorption pressure were executed and 3 bar adsorption pressure is chosen for the subsequent optimization study. The PSA study which operated at the optimum operating condition yielded hydrogen purity of up to 99.978% with recovery of 80.014%.
机译:本文介绍了对发电厂中的二氧化碳(CO2)捕获的有效选择的压力挥杆吸附(PSA)的可持续性的第一次评估。 PSA是空气分离,气体净化和CO2捕获的良好的气体分离技术。 PSA系统涉及吸附过程,吸附剂在气体分离中发挥极其重要的过程。吸附剂必须是多孔的并且优选具有每单位质量大的表面积。在该研究中使用了激活的棕榈仁活性炭(APK),用于二元混合物气体分离涉及二氧化碳和氢气(CO2 / H2)。,表征研究表明,制备的吸附剂的比表面积约为697.67m〜2 / g具有孔隙体积和孔径分别为0.35m〜3 / g和2.01nm。吸附剂样品的平均粒度记录为0.11μm。扫描电子显微镜(SEM)和X射线衍射(XRD)分析揭示了高度无定形的ACPK的海绵结构。执行各种吸附压力的突破性研究,选择3巴吸附压力,用于随后的优化研究。以最佳运行条件运行的PSA研究产生高达99.978%的氢纯度,回收率为80.014%。

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