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模拟碳纳米管对 CO₂/N₂混合物有效分离的吸附选择性。

Modeling the adsorptive selectivity of carbon nanotubes for effective separation of CO₂/N₂ mixtures.

机构信息

Molecular Simulation Research Laboratory, Department of Chemistry, Iran University of Science and Technology, Tehran, Iran.

出版信息

J Mol Model. 2011 May;17(5):1163-72. doi: 10.1007/s00894-010-0810-9. Epub 2010 Aug 8.

Abstract

Canonical Monte Carlo (CMC) simulations were carried out to investigate the behavior of CO(2) and N(2) mixtures upon adsorption on single walled carbon nanotubes (CNTs). In the simulation, all the particle-particle interactions between CO(2), N and C were modeled using Lennard-Jones (LJ) potential. To provide deep insight into the effect of pore width, temperature, pressure and bulk composition on the adsorption behavior of CO(2) /N(2) mixtures, five different CNTs [(6,6), (7,7), (8,8) (9,9) and (10,10) CNT] with diameters ranging from 0.807 to 1.35 nm, three temperatures (300 323 and 343 K), six pressures (0.15, 2, 4, 6, 8 and 10 MPa), and three bulk mole compositions of carbon dioxide (0.3 0.5 and 0.7) were tested. The results from all the simulation conditions investigated in this work show that CNTs preferentially adsorb carbon dioxide relative to nitrogen in a binary mixture. The results are consistent with the hypothesis that stronger interaction of one component with the nanotube surface results in a higher adsorption capacity compared to the other component. An optimized pore size of D = 8.07 nm corresponding to (6, 6) CNT, at T = 300 K and P = 0.15 MPa at a bulk mole composition of y(CO2) =0.3 was identified in which carbon nanotubes demonstrate the greatest selectivity for separation of carbon dioxide relative to nitrogen. In addition, it is worth pointing out that, under similar simulation conditions, CNTs exhibit higher selectivity compared to other carbon-based materials [carbon membrane polyimide (PI) and PI/multi-wall carbon nanotubes (MWCNTs)] for CO(2) adsorption. As a prototype, the selectivity of an equimolar mixture of CO(2) /N(2) for adsorption on (6, 6) CNTs at 300 K and 0.15 MPa reaches 9.68, which is considerably larger than that reported in carbon membrane. Therefore, it can be concluded that carbon nanotubes can act as a capable adsorbent for adsorption/desorption of CO(2) in comparison with other carbon-based materials in the literature.

摘要

采用正则蒙特卡罗(CMC)模拟方法研究了 CO(2)和 N(2)混合物在单壁碳纳米管(CNT)上吸附的行为。在模拟中,CO(2)、N 和 C 之间的所有粒子-粒子相互作用都采用 Lennard-Jones(LJ)势进行建模。为了深入了解孔径、温度、压力和混合物组成对 CO(2)/N(2)混合物吸附行为的影响,使用了五种不同直径为 0.807 至 1.35nm 的 CNT[(6,6)、(7,7)、(8,8)、(9,9)和(10,10) CNT],三个温度(300、323 和 343K),六个压力(0.15、2、4、6、8 和 10MPa)和三种二氧化碳的混合物摩尔组成(0.3、0.5 和 0.7)进行了测试。在这项工作中研究的所有模拟条件的结果表明,CNT 优先吸附二元混合物中的二氧化碳而不是氮气。结果与以下假设一致,即一个组分与纳米管表面的相互作用越强,与另一个组分相比,吸附容量越高。在温度为 300K、压力为 0.15MPa、混合物摩尔组成为 y(CO2)=0.3 的情况下,确定了优化的孔径 D=8.07nm,对应于(6,6)CNT,在此条件下,碳纳米管对二氧化碳相对于氮气的分离表现出最大的选择性。此外,值得指出的是,在类似的模拟条件下,CNT 对 CO(2)吸附的选择性高于其他基于碳的材料[碳膜聚酰亚胺(PI)和 PI/多壁碳纳米管(MWCNTs)]。作为一个原型,在 300K 和 0.15MPa 下,等摩尔 CO(2)/N(2)混合物在(6,6)CNT 上的吸附选择性达到 9.68,明显大于碳膜中的报道值。因此,可以得出结论,与文献中的其他基于碳的材料相比,碳纳米管可以作为一种有能力的 CO(2)吸附/解吸吸附剂。

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