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Betung bamboo-based activated carbon bioadsorbent for the separation of hydrogen-methane gas mixture

机译:必通竹基活性炭生物吸附剂,用于分离氢气-甲烷混合物

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Hydrogen recovery from off gas of hydrocracking and hydrotreating unit is one of the crucial processes in an oil and gas refinery unit as this process helps in lowering the expenses for operations. This study aims to obtain activated carbon that is made from Betung bamboo which can be used as the adsorbent in this process. The activated agents used are H3PO4 and K2CO3, respectively. Each activation lasts for 30 minutes. The results of the characterization test shows that the Iodine number of the activated carbon produced reaches 916.4 mg/g with BET surface area of 465.2 m~(2)/g. SEM-EDX analysis shows that the carbon content is 74.83%. The activated carbon obtained is used to separate Hydrogen and Methane from its mixture at 10, 20 and 30oC with pressure variations of 1 - 6 bar. The results indicate that the maximum number of moles adsorbed from CH4(21.5%)/H2 gas mixture is 0.247 mmol/g, that has been carried out at 6 bar with temperature of 10oC. Methane has 2.2 times higher adsorption capacity than hydrogen, therefore, the Betung bamboo based activated carbon produced from this research can be applied as the adsorbent in the separation process of CH_(4)/H_(2)mixture and it fits the Langmuir model.
机译:从加氢裂化和加氢处理装置的废气中回收氢气是石油和天然气精炼装置中的关键过程之一,因为该过程有助于降低运营成本。这项研究旨在获得由必通竹子制成的活性炭,该活性炭可以在此过程中用作吸附剂。所使用的活化剂分别是H3PO4和K2CO3。每次激活持续30分钟。表征测试结果表明,所产生的活性炭的碘值达到916.4 mg / g,BET表面积为465.2 m〜(2)/ g。 SEM-EDX分析表明碳含量为74.83%。得到的活性炭用于在10、20和30oC的压力变化为1-6 bar的条件下从其混合物中分离出氢气和甲烷。结果表明,从CH4(21.5%)/ H2气体混合物中吸附的最大摩尔数为0.247 mmol / g,这是在6 bar和10oC的温度下进行的。甲烷的吸附能力是氢的2.2倍,因此,本研究生产的必通竹基活性炭可作为CH_(4)/ H_(2)混合物分离过程中的吸附剂,符合Langmuir模型。

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