Furmaniak Sylwester
a Physicochemistry of Carbon Materials Research Group, Faculty of Chemistry , Nicolaus Copernicus University in Toruń , Gagarin St. 7, 87-100 Toruń , Poland.
Environ Technol. 2015 Jul-Aug;36(13-16):1984-99. doi: 10.1080/09593330.2015.1018843. Epub 2015 Mar 18.
Based on series of porous carbon models, systematic Monte Carlo studies on the adsorption of acetonitrile (as a simple representative of polar volatile organic compounds) were performed. The influence of porosity and chemical composition of the carbon surface on CH3CN adsorption was studied and it was shown that both the factors influenced the adsorption mechanism. A decrease in the pore size and the introduction of oxygen surface groups led to a rise in adsorption energy and to an increase in the filling of accessible volume in the low-pressure part of the isotherm. However, from a practical point of view, it is easier to increase the adsorption by introducing polar groups on the carbon surface than by modifying the porosity.
基于一系列多孔碳模型,对乙腈(作为极性挥发性有机化合物的简单代表)的吸附进行了系统的蒙特卡洛研究。研究了碳表面孔隙率和化学成分对CH3CN吸附的影响,结果表明这两个因素都影响吸附机理。孔径减小和引入氧表面基团导致吸附能增加,等温线低压部分可及体积的填充量增加。然而,从实际角度来看,通过在碳表面引入极性基团来增加吸附比通过改变孔隙率更容易。