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Hyper-parallel tempering Monte Carlo simulations of Ar adsorption in new models of microporous non-graphitizing activated carbon: effect of microporosity

机译:超平行回火的蒙特卡洛模拟在微孔非石墨化活性炭新模型中的Ar吸附:微孔率的影响

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The adsorption of gases on microporous carbons is still poorly understood, partly because the structure of these carbons is not well known. Here, a model of microporous carbons based on fullerene- like fragments is used as the basis for a theoretical study of Ar adsorption on carbon. First, a simulation box was constructed, containing a plausible arrangement of carbon fragments. Next, using a new Monte Carlo simulation algorithm, two types of carbon fragments were gradually placed into the initial structure to increase its microporosity. Thirty six different microporous carbon structures were generated in this way. Using the method proposed recently by Bhattacharya and Gubbins ( BG), the micropore size distributions of the obtained carbon models and the average micropore diameters were calculated. For ten chosen structures, Ar adsorption isotherms ( 87 K) were simulated via the hyper- parallel tempering Monte Carlo simulation method. The isotherms obtained in this way were described by widely applied methods of microporous carbon characterisation, i. e. Nguyen and Do, Horvath - Kawazoe, high- resolution alpha(a)s plots, adsorption potential distributions and the Dubinin - Astakhov ( DA) equation. From simulated isotherms described by the DA equation, the average micropore diameters were calculated using empirical relationships proposed by different authors and they were compared with those from the BG method.
机译:气体在微孔碳上的吸附仍知之甚少,部分原因是这些碳的结构尚不为人所知。在这里,基于富勒烯样碎片的微孔碳模型被用作理论研究Ar吸附在碳上的基础。首先,构建一个模拟箱,其中包含合理的碳碎片排列。接下来,使用新的蒙特卡洛模拟算法,将两种类型的碳片段逐渐放入初始结构中,以增加其微孔率。以这种方式产生了三十六种不同的微孔碳结构。使用Bhattacharya和Gubbins(BG)最近提出的方法,计算了所得碳模型的微孔尺寸分布和平均微孔直径。对于十种选定的结构,通过超平行回火蒙特卡罗模拟方法模拟了Ar吸附等温线(87 K)。用微孔碳表征的广泛应用方法描述了以这种方式获得的等温线,即。 e。 Nguyen和Do,Horvath-Kawazoe,高分辨率alpha(a)图,吸附势分布和Dubinin-Astakhov(DA)方程。根据DA方程描述的模拟等温线,使用不同作者提出的经验关系来计算平均微孔直径,并将其与BG方法进行比较。

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