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首页> 外文期刊>International journal of chemical engineering >Comparative Study of Textural Characteristics on Methane Adsorption for Carbon Spheres Produced by CO2 Activation
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Comparative Study of Textural Characteristics on Methane Adsorption for Carbon Spheres Produced by CO2 Activation

机译:二氧化碳活化产生的碳球吸附甲烷的质地特征比较研究

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摘要

Resorcinol-formaldehyde resin polymer was used as raw material for preparation of carbon spheres. Samples were treated with CO2 flow at 850°C by varying activation times. The CO2 activation granted better pore development of pore structure. The experimental data of CH4 adsorption as a function of equilibrium pressure was fitted by Langmuir and Dubinin-Astakhov (D-A) models. It was concluded that the high surface area and micropore volume of carbon spheres did unequivocally determine methane capacities. In addition, a thermodynamic study of the heat of adsorption of CH4 on the carbon spheres was carried out. Adsorption of CH4 on carbon spheres showed a decrease in the adsorption heat with CH4 occupancy, and the heat of adsorption fell from 20.51 to 12.50 kJ/mol at 298 K and then increased to a little higher values at a very high loading (>0.70), indicating that CH4/CH4 interactions within the adsorption layer became significant.
机译:间苯二酚-甲醛树脂聚合物被用作制备碳球的原料。通过改变活化时间在850℃下用CO 2流处理样品。 CO 2活化赋予孔结构更好的孔发展。 CH4吸附作为平衡压力的函数的实验数据由Langmuir和Dubinin-Astakhov(D-A)模型拟合。结论是,碳球的高表面积和微孔体积确实确定了甲烷的容量。另外,对碳球上CH4的吸附热进行了热力学研究。碳球上CH4的吸附显示出吸附热随CH4的吸收而降低,在298 K时,吸附热从20.51降至12.50 kJ / mol,然后在非常高的负荷下(> 0.70)升高到更高的值。 ,表明吸附层内的CH4 / CH4相互作用变得显着。

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