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首页> 外文期刊>The Journal of Chemical Physics >Adsorption hysteresis and pore critical temperature in a single cylindrical pore
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Adsorption hysteresis and pore critical temperature in a single cylindrical pore

机译:单个圆柱孔中的吸附滞后和孔临界温度

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The effect of temperature on adsorption isotherms of Ar, N-2, O-2, C2H4, and CO2 on model mesoporous adsorbents (MCM-41) with different pore sizes (pore radius r(p) = 1.2, 1.4, 2.1 nm) has been measured. The results clearly show that the hysteresis loop shrinks with increasing temperature and eventually disappears at the hysteresis critical temperature (T-ch), which depends on the average pore size but lies substantially below the pore critical temperature (T-cp) A plot of (T-c-T-ch)/T-c against d/r(p) for all the gases examined, except for CO2, forms a single straight line passing through the origin, where d is the molecular diameter. This relationship predicts that the adsorption hysteresis never occurs in the cylindrical pore of radius smaller than twice the molecular diameter. On the other hand, the same plot for conventional adsorbents with an interconnected network of irregular pores seems to be smoothly linked to the data points of T-cp on MCM-41 rather than those of T-ch on MCM-41. (C) 1998 American Institute of Physics. [References: 34]
机译:温度对不同孔径(孔径r(p)= 1.2、1.4、2.1 nm)的模型介孔吸附剂(MCM-41)上Ar,N-2,O-2,C2H4和CO2的吸附等温线的影响已被测量。结果清楚地表明,磁滞回线随温度升高而收缩,并最终在磁滞临界温度(T-ch)处消失,该温度取决于平均孔径,但基本上低于孔临界温度(T-cp)。除CO2以外,所有检查的气体的TcT-ch)/ Tc对于d / r(p)都形成一条穿过原点的直线,其中d是分子直径。这种关系表明,在小于分子直径两倍的半径的圆柱孔中不会发生吸附滞后。另一方面,具有不规则孔的互连网络的常规吸附剂的同一图似乎可以平滑地链接到MCM-41上的T-cp数据点,而不是MCM-41上的T-ch数据点。 (C)1998美国物理研究所。 [参考:34]

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