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Methane Recovery from Gaseous Mixtures Using Carbonaceous Adsorbents

机译:使用碳质吸附剂从气态混合物中回收甲烷

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Methane recovery from gaseous mixtures has both economical and ecological aspect. Methane from different waste gases like mine gases, nitrogenated natural gases and biogases can be treated as local source for production electric and heat energy. Also occurs the problem of atmosphere pollution with methane that shows over 20 times more harmful environmental effect in comparison to carbon dioxide. One of the ways utilisation such gases is enrichment of methane in the PSA technique, which requires appropriate adsorbents. Active carbons and carbon molecular sieve produced by industry and obtained in laboratory scale were examined as adsorbent for methane recuperation. Porous structure of adsorbents was investigated using densimetry measurements and adsorption of argon at 77.5K. On the basis of adsorption data, the Dubinin-Radushkevich equation parameters, micropore volume (Wo) and characteristics of energy adsorption (Eo) as well as area micropores (Smi) and BET area (SBET) were determined.The usability of adsorbents in enrichment of the methane was evaluated in the test, which simulate the basic stages of PSA process: a) adsorbent degassing, b) pressure raise in column by feed gas, c) cocurrent desorption with analysis of out flowing gas. The composition of gas phase was accepted as the criterion of the suitability of adsorbent for methane separation from gaseous mixtures. The relationship between methane recovery from gas mixture and texture parameters of adsorbents was found.
机译:从气态混合物中回收甲烷具有经济和生态两方面的意义。来自不同废气(如矿井瓦斯,氮化天然气和沼气)的甲烷可被视为当地产生电能和热能的来源。还会发生甲烷污染大气的问题,与二氧化碳相比,甲烷对环境的有害影响要大20倍以上。利用这种气体的方法之一是在PSA技术中富集甲烷,这需要适当的吸附剂。研究了工业生产和实验室规模获得的活性炭和碳分子筛作为甲烷回收的吸附剂。使用密度测量法和在77.5K的氩气吸附条件研究吸附剂的多孔结构。根据吸附数据,确定Dubinin-Radushkevich方程参数,微孔体积(Wo)和能量吸附特征(Eo)以及面积微孔(Smi)和BET面积(SBET)。吸附剂在浓缩中的可用性在测试中评估了甲烷的甲烷含量,该甲烷模拟了PSA过程的基本阶段:a)吸附剂脱气,b)进料气在塔中升压,c)并流脱附并分析流出的气体。气相的组成被认为是吸附剂适合从气体混合物中分离甲烷的标准。发现从混合气体中回收甲烷与吸附剂的织构参数之间的关系。

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