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首页> 外文期刊>Journal of CO2 Utilization >Performance of non-aqueous amine hybrid solvents mixtures for CO2 capture: A study using a molecular-based model
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Performance of non-aqueous amine hybrid solvents mixtures for CO2 capture: A study using a molecular-based model

机译:非胺杂交溶剂的性能CO 2捕获混合物:使用基于分子的模型进行研究

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摘要

We present here results regarding the chemisorption of CO2 in non-aqueous hybrid solvents of mixtures of amines and physical solvents such as glycols or glymes as alternatives to aqueous amines for CO2 capture and separation, using the molecular-based equation of state, soft-SAFT, as a modelling tool. The reactive nature of the CO2 absorption process in non-aqueous amines was implicitly considered through the formation of CO2 amine physical aggregates bounded by strong and localised intermolecular interactions, with the effect of nonaqueous solvents on the reactivity included in these interactions. With such a modelling framework, only VLE data on the absorption of CO2 in amine solvents is required, without any need for additional information such as speciation reactions or equilibrium constants, thus decreasing the number of adjustable parameters needed to accurately model the absorption process. Subsequently, the developed models were used to examine the CO2 capture performance of these hybrid solvents in terms of absorption cyclic capacity and heat of regeneration as key performance indicators using a simple and short-cut estimation method. Results show that for the same total amine mass concentration, non-aqueous amine solvents possess a 30-40% decrease in total heat of regeneration compared to their aqueous counterparts at the expense of a 10-50% reduction in cyclic capacity. These results validate the reliability of the molecular modelling approach as an attractive and valuable tool for the screening of chemical solvents and process modelling.
机译:我们在此提出关于Co2在非水杂交溶剂中的化学吸附在胺和物理溶剂的混合物中,例如二甘醇或甘草作为CO 2捕获和分离的含水胺的替代品,使用基于分子的状态,软锯作为建模工具。通过形成具有强且局部分子间相互作用的CO 2胺物理聚集体,隐式考虑非水胺的二氧化碳吸收过程的反应性质,非水溶剂对这些相互作用中包含的反应性的影响。利用这种建模框架,需要在胺溶剂中吸收CO 2的VLE数据,而无需任何需要诸如物质反应或平衡常数的额外信息,从而降低准确地模拟吸收过程所需的可调节参数的数量。随后,开发的模型用于检查这些混合溶剂的CO2捕获性能,在吸收环状容量和再生热作为关键性能指标中的关键性能指标。结果表明,对于相同的总胺质量浓度,与其含水对应物相比,非水性胺溶剂具有30-40%的再生热量减少,其循环能力降低10-50%。这些结果验证了分子建模方法的可靠性,作为筛选化学溶剂和工艺造型的有吸引力和有价值的工具。

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