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Modelling of CO2 separation from gas streams emissions in the oil and gas industries

机译:石油和天然气行业中从气流排放中分离CO2的模型

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摘要

Sodium glycinate solutions have low vapor pressure, low viscosity, and high chemical reactivity with CO2. They have remarkable potential for removal of CO2 from the flue gases, because absorption of CO2 with an amino acid salt solution such as sodium glycinate is accompanied with precipitation. As the liquid phase contains solid compounds during absorption of CO2, the reactions move into the production of various materials and a further amount of CO2 is absorbed. In the current study, a support vector machine algorithm is utilized to predict carbon dioxide solubility in aqueous sodium glycinate solutions over wide ranges of temperature, pressure, and concentration. The proposed model can be of immense value for engineers to have a quick check on the CO2 solubility in sodium glycinate solutions without opting for any experimental works. Results obtained from the model have shown excellent agreement with reported data in the literature.
机译:甘氨酸钠溶液具有低蒸气压,低粘度和与CO2的高化学反应性。它们具有从烟道气中去除CO2的巨大潜力,因为氨基酸盐溶液(如甘氨酸钠)吸收CO2会伴随沉淀。由于液相在吸收CO2的过程中包含固体化合物,因此反应进入了各种材料的生产过程,并且进一步吸收了CO2。在当前研究中,支持向量机算法用于预测甘氨酸钠水溶液在宽泛的温度,压力和浓度范围内的二氧化碳溶解度。对于工程师来说,快速选择甘氨酸钠溶液中的CO2溶解度而无需进行任何实验性工作,所提出的模型可能具有巨大的价值。从模型获得的结果与文献报道的数据显示出极好的一致性。

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