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单壁碳纳米管对烟气的吸附:蒙特卡罗研究

Flue gas adsorption by single-wall carbon nanotubes: A Monte Carlo study.

作者信息

Romero-Hermida M I, Romero-Enrique J M, Morales-Flórez V, Esquivias L

机构信息

Departamento de Química Física, Facultad de Ciencias, Universidad de Cádiz, Campus Río San Pedro s/n, 11510 Puerto Real, Spain.

Departamento de Física Atómica, Molecular y Nuclear, Área de Física Teórica, Universidad de Sevilla, Av. Reina Mercedes s/n, 41012 Sevilla, Spain.

出版信息

J Chem Phys. 2016 Aug 21;145(7):074701. doi: 10.1063/1.4961023.

Abstract

Adsorption of flue gases by single-wall carbon nanotubes (SWCNT) has been studied by means of Monte Carlo simulations. The flue gas is modeled as a ternary mixture of N2, CO2, and O2, emulating realistic compositions of the emissions from power plants. The adsorbed flue gas is in equilibrium with a bulk gas characterized by temperature T, pressure p, and mixture composition. We have considered different SWCNTs with different chiralities and diameters in a range between 7 and 20 Å. Our results show that the CO2 adsorption properties depend mainly on the bulk flue gas thermodynamic conditions and the SWCNT diameter. Narrow SWCNTs with diameter around 7 Å show high CO2 adsorption capacity and selectivity, but they decrease abruptly as the SWCNT diameter is increased. For wide SWCNT, CO2 adsorption capacity and selectivity, much smaller in value than for the narrow case, decrease mildly with the SWCNT diameter. In the intermediate range of SWCNT diameters, the CO2 adsorption properties may show a peculiar behavior, which depend strongly on the bulk flue gas conditions. Thus, for high bulk CO2 concentrations and low temperatures, the CO2 adsorption capacity remains high in a wide range of SWCNT diameters, although the corresponding selectivity is moderate. We correlate these findings with the microscopic structure of the adsorbed gas inside the SWCNTs.

摘要

通过蒙特卡罗模拟研究了单壁碳纳米管(SWCNT)对烟道气的吸附。烟道气被模拟为N2、CO2和O2的三元混合物,以模拟发电厂排放物的实际组成。吸附的烟道气与以温度T、压力p和混合物组成表征的大量气体处于平衡状态。我们考虑了手性和直径在7至20 Å范围内不同的单壁碳纳米管。我们的结果表明,CO2的吸附特性主要取决于大量烟道气的热力学条件和单壁碳纳米管的直径。直径约为7 Å的窄单壁碳纳米管显示出高的CO2吸附容量和选择性,但随着单壁碳纳米管直径的增加,它们会突然下降。对于宽单壁碳纳米管,CO2的吸附容量和选择性比窄单壁碳纳米管的值小得多,并且随着单壁碳纳米管直径的增加而略有下降。在单壁碳纳米管直径的中间范围内,CO2的吸附特性可能会表现出特殊的行为,这在很大程度上取决于大量烟道气的条件。因此,对于高的大量CO2浓度和低温,尽管相应的选择性适中,但在宽范围的单壁碳纳米管直径内,CO2的吸附容量仍然很高。我们将这些发现与单壁碳纳米管内吸附气体的微观结构联系起来。

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