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Thermodynamic models for H_2O-CO_2-H_2 mixtures in near-critical and supercritical regions of water

机译:近临界和超临界水域H_2O-CO_2-H_2混合物的热力学模型

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摘要

The PVTx properties of the H2O-CO2-H-2 mixtures have significant applications in the technology of supercritical water gasification of coal. Here, we first carry out the molecular dynamics simulations of the PVTx properties of the H2O-CO2-H-2 mixtures in the near critical and supercritical regions of water to generate 600 datasets at 750-1150 K and 4.0 -443.5 MPa. The molar fraction of each composition in the ternary mixtures ranges from 10% to 80%. Later we investigate the applicability of a well-known thermodynamic model for the ternary mixtures, namely the Duan-Moller-Weare equation of state (DMW EOS). It is observed that the DMW EOS shows great potential in the prediction of the PVTx properties of the ternary mixtures. However, it is noted that the mixing parameters describing the binary interactions of H2O-H-2 and CO2-H-2 are still unknown in the DMW EOS. By determining the missing mixing parameters using the Levenberg-Marquardt algorithm, the accuracy of the original DMW EOS is improved for the ternary mixtures. Moreover, optimizing the coefficients in the DMW EOS further promotes the accuracy of the model for the H2O-CO2-H-2 mixtures. The results from this work may facilitate the development of supercritical water gasification of coal. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:H2O-CO2-H-2混合物的PVTx特性在煤的超临界水气化技术中具有重要的应用。在这里,我们首先对水的近临界和超临界区域中H2O-CO2-H-2混合物的PVTx特性进行分子动力学模拟,以生成750-1150 K和4.0 -443.5 MPa的600个数据集。三元混合物中每种组合物的摩尔分数为10%至80%。后来,我们研究了三元混合物的著名热力学模型,即Duan-Moller-Weare状态方程(DMW EOS)的适用性。可以看出,DMW EOS在预测三元混合物的PVTx特性方面显示出巨大潜力。但是,要注意的是,在DMW EOS中,描述H2O-H-2和CO2-H-2的二元相互作用的混合参数仍然未知。通过使用Levenberg-Marquardt算法确定丢失的混合参数,可提高三元混合物原始DMW EOS的精度。此外,在DMW EOS中优化系数可以进一步提高H2O-CO2-H-2混合物模型的准确性。这项工作的结果可能促进煤炭超临界水气化的发展。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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