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首页> 外文期刊>Chemical and Biochemical Engineering Quarterly >Pore Size Distribution Analysis of Structure Different Microporous Carbons - Theoretical Evaluation Based on Density Functional Theory and Nitrogen and Argon Experimental Adsorption Isotherms at 77 K
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Pore Size Distribution Analysis of Structure Different Microporous Carbons - Theoretical Evaluation Based on Density Functional Theory and Nitrogen and Argon Experimental Adsorption Isotherms at 77 K

机译:结构不同的微孔碳的孔径分布分析-基于密度泛函理论和77 K氮和氩实验吸附等温线的理论评估

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摘要

Nitrogen and argon adsorption isotherms of four significantly different microporous carbons were experimentally measured at 77 K. Non-local density functional theory was used to predict theoretically the behaviour of both gases in slit-shaped pores in adsorption. Adsorbate molecules were modelled as spheres, fluid-fluid and solid-fluid interactions were described by 12-6 Lennard-Jones and 10-4-3 Steele potentials, respectively. Potential parameters were obtained by fitting the calculated data to experimental isotherms of nitrogen and argon on a non-microporous carbon surface. These results were used for the theoretical evaluation of pore size distribution. An algorithm for the pore size distribution analysis from adsorption data (theoretical and experimental) was suggested and tested on the adsorption data obtained.
机译:在77 K上通过实验测量了四个明显不同的微孔碳的氮和氩吸附等温线。使用非局部密度泛函理论从理论上预测了缝隙形孔中两种气体的吸附行为。将吸附物分子建模为球形,分别通过12-6 Lennard-Jones和10-4-3 Steele势来描述流体-流体和固体-流体的相互作用。通过将计算的数据拟合到非微孔碳表面上的氮气和氩气的实验等温线,可以获得潜在的参数。这些结果用于孔径分布的理论评估。提出了一种从吸附数据(理论和实验)分析孔径分布的算法,并根据获得的吸附数据进行了测试。

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