首页> 外文期刊>The Journal of Chemical Thermodynamics >Solubility of N2O and CO2 in non-aqueous systems of monoethanolamine and glycol ethers: Measurements and model representation
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Solubility of N2O and CO2 in non-aqueous systems of monoethanolamine and glycol ethers: Measurements and model representation

机译:N2O和CO2在单乙醇胺和二醇醚的非水体系中的溶解度:测量和模型表示

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Non-aqueous mixtures of monoethanolamine (MEA) with glycol ethers as low viscosity absorbents have potential advantages for CO2 capture. In this work, physical solubility of N2O and CO2 in glycol ethers (2-methoxyethanol and 2-ethoxyethanol) and their blends with MEA was measured and correlated at temperatures ranging from (293.15 to 333.15) K. Physical solubility of CO2 in the blends was also estimated by N2O/CO2 analogy method. A mathematic model based on the reaction mechanism was proposed to interpret the vapour-liquid equilibrium data for the systems of CO2/MEA/glycol ether solution. Results show that glycol ethers have greater ability to dissolve CO2 than glycols and water. The apparent chemical equilibrium constant was obtained and correlated as a function of temperature by non-linear regression. The proposed model could reasonably fit the experimental data with an average absolute deviation within 10%. The heat of absorption of CO2 in MEA/glycol ether systems was also calculated. (C) 2019 Elsevier Ltd.
机译:用二醇醚的单乙醇胺(MEA)的非水性混合物,因为低粘度吸收剂具有CO 2捕获的潜在优点。在这项工作中,在二醇醚(2-甲氧基乙醇和2-乙氧基乙醇)中的N 2 O和CO 2的物理溶解度和与MEA的共混物在范围(293.15至333.15)K.S2在共混物中的物理溶解度也由N2O / CO2类比方法估计。提出了一种基于反应机理的数学模型,解释CO 2 / MEA /乙二醇醚溶液系统的蒸汽平衡数据。结果表明,二醇醚具有更高的溶解二氧化碳和水的能力。通过非线性回归得到明显的化学平衡常数并与温度的函数相关。所提出的模型可以合理地适合在10%内的平均绝对偏差的实验数据。还计算了MEA /乙二醇醚系统中CO 2的吸收热量。 (c)2019年elestvier有限公司

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