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单壁碳纳米管阵列从二元混合物中捕集痕量硫气体:分子模拟研究。

Capture of trace sulfur gases from binary mixtures by single-walled carbon nanotube arrays: a molecular simulation study.

机构信息

State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing 100029, PR China.

出版信息

Environ Sci Technol. 2011 Jun 1;45(11):4832-8. doi: 10.1021/es1043672. Epub 2011 May 12.

Abstract

Adsorption of H(2)S and SO(2) pure gases and their selective capture from the H(2)S-CH(4), H(2)S-CO(2), SO(2)-N(2), and SO(2)-CO(2) binary mixtures by the single-walled carbon nanotubes (SWNT) are investigated via using the grand canonical Monte Carlo (GCMC) method. It is found that the (20, 20) SWNT with larger diameter shows larger capacity for H(2)S and SO(2) pure gases at T = 303 K, in which the uptakes reach 16.31 and 16.03 mmol/g, respectively. However, the (6,6) SWNT with small diameter exhibits the largest selectivity for binary mixtures containing trace sulfur gases at T = 303 K and P = 100 kPa. By investigating the effect of pore size on the separation of gas mixtures, we found that the optimized pore size is 0.81 nm for separation of H(2)S-CH(4), H(2)S-CO(2), and SO(2)-N(2) binary mixtures, while it is 1.09 nm for the SO(2)-CO(2) mixture. The effects of concentration and temperature on the selectivity of sulfide are also studied at the optimal pore size. It is found that the concentration (ppm) of sulfur components has little effect on selectivity of SWNTs for these binary mixtures. However, the selectivity decreases obviously with the increase of temperature. To improve the adsorption capacities, we further modify the surface of SWNTs with the functional groups. The selectivities of H(2)S-CO(2) and SO(2)-CO(2) mixtures are basically uninfluenced by the site density, while the increase of site density can improve the selectivity of H(2)S-CH(4) mixture doubly. It is expected that this work could provide useful information for sulfur gas capture.

摘要

通过使用巨正则蒙特卡罗(GCMC)方法研究了单壁碳纳米管(SWNT)对 H(2)S 和 SO(2)纯气体的吸附以及从 H(2)S-CH(4)、H(2)S-CO(2)、SO(2)-N(2)和 SO(2)-CO(2)二元混合物中选择性捕获 H(2)S 和 SO(2)纯气体的情况。结果发现,在 T = 303 K 时,直径较大的(20,20)SWNT 对 H(2)S 和 SO(2)纯气体具有更大的容量,其吸收量分别达到 16.31 和 16.03 mmol/g。然而,在 T = 303 K 和 P = 100 kPa 时,直径较小的(6,6)SWNT 对含有痕量硫气体的二元混合物表现出最大的选择性。通过研究孔径对气体混合物分离的影响,我们发现对于 H(2)S-CH(4)、H(2)S-CO(2)和 SO(2)-N(2)二元混合物的分离,优化的孔径为 0.81 nm,而对于 SO(2)-CO(2)混合物则为 1.09 nm。还在最佳孔径下研究了浓度和温度对硫化物选择性的影响。结果发现,硫组分的浓度(ppm)对这些二元混合物中 SWNTs 的选择性影响不大。然而,选择性随温度的升高而明显降低。为了提高吸附能力,我们进一步用官能团修饰 SWNTs 的表面。H(2)S-CO(2)和 SO(2)-CO(2)混合物的选择性基本上不受位密度的影响,而位密度的增加可以使 H(2)S-CH(4)混合物的选择性提高一倍。预计这项工作可以为硫气体捕获提供有用的信息。

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