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Advanced thermodynamic and processing modelling integration for amine scrubbing in post-combustion CO~2~ capture

机译:用于燃烧后CO〜2〜捕集中胺洗涤的高级热力学和工艺建模集成

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摘要

The reduction in CO~2~ emissions from anthropogenic sources has become a topic of widespread interest over the past number of years. As the power generation sector is by far the largest stationary-point-source of CO~2~, being responsible for approximately 35% of total global CO~2~ emissions^1^ this question has special relevance for this industry. As the inclusion of carbon capture facilities incurs a significant energy penalty on the efficiency coal-fired power-stations, there is a strong requirement for the improvement of these systems in terms of the minimisation of operation and maintenance costs, capital costs and the maximisation of efficiency and flexibility. This last issue has relevance for start-up times and ramp-rates. Post-combustion capture methods based on the chemisorption of CO~2~ in aqueous amine solutions are among the most mature and accepted technologies for CO2 capture from power plants^2^. However, amines are complex, associating solvents requiring a sophisticated thermodynamic model, capable of modelling the hydrogen bonding interactions that occur in these systems. One such model is provided by the statistical associating fluid theory (SAFT^3^). This is a molecular approach, specifically suited to hydrogen-bonding, chain-like fluids. In this contribution we use the SAFT approach for potentials of variable range (SAFT-VR^4^) to model the thermodynamics and phase equilibria of a number of amines including ammonia and monoethanolamine. The molecules are modelled as homonuclear chains of tangentially bonded square-well segments of variable range, and a number of short-ranged off-centre attractive square-well sites are used to mediate the anisotropic effects due to association in the fluids. We also determine values of the binary parameters for mixtures and then use these parameters to predict the phase equilibria of amine+water, amine+carbon dioxide as well as water+carbon dioxide mixtures. We then consider the phase equilibria of the ternary mixtures of amine+water+carbon dioxide and finally that of quaternary mixtures of amine+water+carbon dioxide+nitrogen. A good quantitative understanding of the phase behaviour of these quaternary mixtures is essential for accurate modelling of absorption processes for carbon dioxide capture. 1. Steeneveldt, R., Berger, B. & Torp, T.A., ChERD, 84(A9): 739-763, 2006 2. Rao, A.B.; Rubin, E.S., 2002. A Technical, Economic, and Environmental Assessment of Amine-Based CO2 Capture Technology for Power Plant Greenhouse Gas Control. Environ. Sci. Technol. 36, 4467-4475 3. Chapman, W.G., Gubbins, K.E., Jackson, G. & Radosz, M., Ind. Eng. Chem. Res., 1990. 29, 1709-1721 3. Gil-Villegas, A., Galindo, A., Whitehead, P. J., Mills, S. J. & Jackson, G., J. Chem. Phys. 106 (10), 8 March 1997
机译:在过去的几年中,减少人为源的CO〜2〜排放已成为人们广泛关注的话题。由于发电行业是迄今为止CO〜2〜的最大固定点源,约占全球CO〜2〜排放总量的35%^ 1 ^,因此该问题与该行业特别相关。由于包括碳捕集设施会给燃煤发电站带来巨大的能源损失,因此在最大限度地减少运营和维护成本,资本成本以及最大程度地提高碳排放量方面存在强烈的需求。效率和灵活性。最后一个问题与启动时间和斜坡速率有关。基于CO 2-在胺水溶液中化学吸附的燃烧后捕集方法是最成熟和公认的从发电厂中捕集CO 2的技术。但是,胺是复杂的缔合溶剂,需要复杂的热力学模型,能够模拟在这些系统中发生的氢键相互作用。统计缔合流体理论(SAFT ^ 3 ^)提供了一种这样的模型。这是一种分子方法,特别适合于氢键键合的链状流体。在这一贡献中,我们使用SAFT方法对可变范围的电势(SAFT-VR ^ 4 ^)进行建模,以模拟许多胺(包括氨和单乙醇胺)的热力学和相平衡。分子被建模为可变范围的切向键合的方孔段的同核链,并且由于流体中的缔合,许多短距离偏心引人注目的方孔位点被用来介导各向异性效应。我们还确定混合物的二元参数值,然后使用这些参数预测胺+水,胺+二氧化碳以及水+二氧化碳混合物的相平衡。然后,我们考虑胺+水+二氧化碳的三元混合物的相平衡,最后考虑胺+水+二氧化碳+氮的四元混合物的相平衡。对这些四元混合物的相态行为有一个很好的定量了解,对于精确建模二氧化碳捕获的吸收过程至关重要。1. Steeneveldt,R.,Berger,B.&Torp,T.A.,ChERD,84(A9):739-763,20062. Rao,AB。 Rubin,E.S.,2002年。《用于电厂温室气体控制的胺基CO2捕集技术的技术,经济和环境评估》。环境。科学技术。 36,4467-44753. W.G. Chapman,K.E. Gubbins,G. Jackson和M. Radosz,Ind。Eng。化学Res。,1990. 29,1709-17213. Gil-Villegas,A.,Galindo,A.,Whitehead,P. J.,Mills,S. J.&Jackson,G.,J. Chem。物理106(10),1997年3月8日

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