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Theoretical and Experimental Study on the Adsorption and Desorption of Methane by Granular Activated Carbon at 25 ℃

机译:25℃颗粒活性炭吸附和脱附甲烷的理论和实验研究

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A theoretical and experimental study was conducted to accurately determine the amount of adsorption and desorption of methane by various Granular Activated Carbon (GAC) under different physical conditions. To carry out the experiments, the volumetric method was used up to 500 psia at constant temperature of 25 ℃. In these experiments, adsorption as well as desorption capacities of four different GAC in the adsorption of methane, the major constituent of natural gas, at various equilibrium pressures and a constant temperature were studied. Also, various adsorption isotherm models were used to model the experimental data collected from the experiments. The accuracy of the results obtained from the adsorption isotherm models was compared and the values for the regressed parameters were reported. The results shows that the physical characteristics of activated carbons such as BET surface area, micropore volume, packing density, and pore size distribution play an important role in the amount of methane to be adsorbed and desorbed.
机译:进行了理论和实验研究,以准确确定各种颗粒状活性炭(GAC)在不同物理条件下对甲烷的吸附和解吸量。为了进行实验,在25℃的恒定温度下使用了高达500 psia的体积法。在这些实验中,研究了四种不同的GAC在各种平衡压力和恒定温度下吸附甲烷(天然气的主要成分)的吸附能力和解吸能力。同样,各种吸附等温线模型被用来对从实验中收集的实验数据进行建模。比较了从吸附等温线模型获得的结果的准确性,并报告了回归参数的值。结果表明,活性炭的物理特性(如BET表面积,微孔体积,堆积密度和孔径分布)在要吸附和解吸的甲烷量中起重要作用。

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