...
首页> 外文期刊>Engineering journal >Characterization of Single Wall Carbon Nanotubes and Activated Carbon with Water Adsorption in Finite-Length Pore Models
【24h】

Characterization of Single Wall Carbon Nanotubes and Activated Carbon with Water Adsorption in Finite-Length Pore Models

机译:有限长度孔模型中单壁碳纳米管和活性炭在水中的吸附特性

获取原文
           

摘要

A Grand Canonical Monte Carlo simulation method is used to study the adsorption of water in activated carbon and carbon nanotubes, and the simulation results are compared with the experimental data obtained gravimetrically. To investigate the role of functional groups on water adsorption, the hydroxyl group is chosen and grafted at various locations on the surface. The spacing between adjacent nanotubes is varied. For small spacings, it has no effect on the isotherms if the functional group is located outside the central tube. This is due to the geometrical constraint that hinders the hydrogen bonding for water molecules to form clusters. However, the onset of adsorption occurs at lower pressures for both inside and outside the tubes when the functional group is positioned near the interstice. For larger separation, clusters are readily formed and the functional group enhances adsorption isotherms both inside and outside the tubes, and capillary condensation occurs in the interstices. For slits, the position and concentration of functional group affect adsorption. At low temperatures, water isotherms have an unusual behavior in that the 10 °C isotherm is less than that at 15 °C, which is in opposite to what thermodynamics suggests. However this behavior can be explained with our computer simulation, suggesting that water adsorption in carbon could be affected strongly by the metastable state and the slow kinetics of cluster formation at low temperatures. (28 views)
机译:采用Grand Canonical Monte Carlo模拟方法研究了水在活性炭和碳纳米管中的吸附情况,并将模拟结果与重量分析得到的实验数据进行了比较。为了研究官能团在水吸附中的作用,选择了羟基并将其接枝到表面的各个位置。相邻纳米管之间的间隔是变化的。对于小间距,如果官能团位于中心管外部,则对等温线没有影响。这是由于几何学约束阻碍了水分子的氢键形成簇。但是,当官能团位于空隙附近时,在管子的内部和外部都在较低的压力下发生吸附。对于较大的分离,容易形成簇,并且官能团增强了管内和管外的吸附等温线,并且在空隙中发生了毛细管冷凝。对于狭缝,官能团的位置和浓度会影响吸附。在低温下,水的等温线具有不寻常的行为,因为10°C的等温线小于15°C的等温线,这与热力学表明的相反。然而,这种行为可以用我们的计算机模拟来解释,表明碳中的水吸附可能受到亚稳态和低温下簇形成的缓慢动力学的强烈影响。 (28观看次数)

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号