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首页> 外文期刊>Journal of Hazardous Materials >Molecular simulation studies of adsorption of hydrogen cyanide and methyl ethyl ketone on zeolite NaX and activated carbon
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Molecular simulation studies of adsorption of hydrogen cyanide and methyl ethyl ketone on zeolite NaX and activated carbon

机译:沸石NaX和活性炭吸附氰化氢和甲基乙基酮的分子模拟研究

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In the present research study the primary aim is to understand and characterize the physical adsorption of polar molecules namely, hydrogen cyanide and methyl ethyl ketone (MEK) in zeolite NaX, and activated carbon through detailed Monte-Carlo simulations and computational quantum chemistry techniques. The sorption capacity and affinity of the zeolite is compared with activated carbon with different acid site concentrations, type of acid site, and pore sizes by simulating single component isotherms and Henry's constant at 25 ℃. The role/contribution of certain types of electrostatic interactions namely charge-dipole, charge-induced dipole with zeolite NaX and activated carbon, as well as dipole-dipole interactions among polar molecules is analyzed and discussed.
机译:在本研究中,主要目的是通过详细的蒙特卡洛模拟和计算量子化学技术,了解和表征极性分子即氰化氢和甲基乙基酮(MEK)在沸石NaX和活性炭中的物理吸附。通过模拟单组分等温线和25℃下的亨利常数,将沸石的吸附能力和亲和力与不同酸位点浓度,酸位点类型和孔径的活性炭进行了比较。分析和讨论了某些类型的静电相互作用的作用/贡献,即电荷偶极,与沸石NaX和活性炭的电荷诱导偶极,以及极性分子之间的偶极-偶极相互作用。

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