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Adsorption of carbon dioxide on mesoporous silicas near the critical temperature

机译:临界温度附近在中孔二氧化硅上的二氧化碳吸附

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The adsorption of carbon dioxide on mesoporous silicas was studied near the critical temperature (T-c) of CO2, i.e. 304.2 K. The critical temperature in the mesopores at which the first-order phase transition (capillary condensation) was observed (T-cp) was estimated from the inverse slope of the adsorption isotherms and the behaviour of the adsorption isotherms per unit surface area. The values of T-cp for CO2 in mesopores whose radii, r(p), were 3.02 and 2.14 nm were higher than those estimated using a slab model in which the adsorbing parts of layer were clearly separated from the non-adsorbing regions. The differential heat of adsorption decreased with increasing pore size of the mesoporous adsorbent. This result also suggested a deviation from the slab model.
机译:在接近二氧化碳的临界温度(Tc),即304.2 K的条件下,研究了二氧化碳在中孔二氧化硅上的吸附。观察到一阶相变(毛细管冷凝)的介孔临界温度(T-cp)为由吸附等温线的反斜率和单位表面积的吸附等温线的行为估算。半径r(p)为3.02和2.14 nm的中孔中CO2的T-cp值高于使用平板模型估计的值,在该平板模型中,层的吸附部分与非吸附区明显分开。吸附的差热随着中孔吸附剂孔径的增加而降低。该结果还表明与平板模型存在偏差。

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