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首页> 外文期刊>Acta Chimica Slovenica >Separation of Biogas Components with Single Wall Carbon Nanotubes: a GCMC Simulation
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Separation of Biogas Components with Single Wall Carbon Nanotubes: a GCMC Simulation

机译:单壁碳纳米管分离沼气成分:GCMC模拟

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Biogas is a green energy source that mainly contains CH4, CO2 ,traces of H2S and fractions of H2O vapor. One of the effective methods in biogas treatment from its pollutants is adsorptive separation. Here, enrichment of methane using (10, 10) and (6, 6) carbon nanotubes (CNTs) in modelled biogas consisting CH4, CO2 and H2S is studied. Simulations were carried out using Grand Canonical Monte Carlo (GCMC) method. Adsorption isotherms obtained at various temperatures and pressures for two single wall carbon nanotubes (SWCNTs). To quantify the separation ability of the nanotubes the adsorptive separation factors for H2S/CH4 and CO2/CH4 were calculated. For studding temperature effect, simulations at two (0.1 and 1 MPa) pressures and four temperatures: 288, 298, 318 and 338 K have been performed. In all studied conditions, CO2 is preferentially adsorbed by CNTs. Results have shown that the two separation factors are considerable, particularly for (10,10) CNT. Additionally, the adsorption and selectivity behaviour of studied gases were considered in (6,6), (8,8) and (10,10) CNT hexagonal bundles for comparison. The results for single nanotubes were confirmed with the bundles. Hence, despite lower concentration of CO2 than CH4 and trace amount of H2S in biogas, they can be separated from methane effectively by CNTs as adsorbents. Our results showed that the CNTs can be remarkable tools in methane separation from biogas.
机译:沼气是一种绿色能源,主要包含CH4,CO2,痕量的H2S和少量的H2O蒸气。从其污染物中处理沼气的有效方法之一是吸附分离。在这里,研究了在由CH4,CO2和H2S组成的模型沼气中使用(10,10)和(6,6)碳纳米管(CNT)富集甲烷的方法。使用大正则蒙特卡洛(GCMC)方法进行了仿真。两个单壁碳纳米管(SWCNT)在各种温度和压力下获得的吸附等温线。为了量化纳米管的分离能力,计算了H2S / CH4和CO2 / CH4的吸附分离因子。对于温度影响,已经在两个(0.1和1 MPa)压力和四个温度下进行了模拟:288、298、318和338K。在所有研究的条件下,CO2优先被CNT吸附。结果表明,这两个分离因子相当可观,尤其是对于(10,10)CNT。此外,为了比较,考虑了(6,6),(8,8)和(10,10)CNT六角形束中所研究气体的吸附和选择性行为。用束确认了单个纳米管的结果。因此,尽管沼气中的CO2浓度低于CH4且痕量的H2S,它们仍可以通过CNTs作为吸附剂有效地与甲烷分离。我们的结果表明,碳纳米管可以成为沼气中甲烷分离的重要工具。

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