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Modified a Function for the Peng-Robinson Equation of State To Improve the Vapor Pressure Prediction of Non-hydrocarbon and Hydrocarbon Compounds

机译:修改了Peng-Robinson状态方程的函数,以改善非烃和烃化合物的蒸气压预测

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On the basis of the available vapor pressures for 59 non-hydrocarbon and hydrocarbon compounds, including heavy alkanes up to n-tritetracontane (n-C_(43)H_(88)), a modified a function for the Peng-Robinson equation of state (PR-EOS) has been developed to more accurately determine the vapor pressure for pure non-hydrocarbon and hydrocarbon compounds, especially heavy components. To balance the characterization of both light and heavy compounds, the Pitzer acentric factor is first redefined in terms of reduced vapor pressure at a reduced temperature of 0.6. In comparison to the evaluated a functions used for the PR-EOS, it is found that the newly developed a function with the redefined acentric factor provides a more accurate prediction of vapor pressures with a percentage average absolute deviation of 1.90% and a percentage maximum absolute deviation of 21.22% for the 59 chemical species. In addition, the newly developed α function results in the best prediction of the vaporization enthalpy data with an average absolute deviation of 3.92% in comparison to the other existing α functions evaluated.
机译:根据59种非碳氢化合物和碳氢化合物的可用蒸气压,包括重链烷烃直至n-tritetracontane(n-C_(43)H_(88)),对Peng-Robinson状态方程的修正函数(PR-EOS)的开发旨在更准确地确定纯非烃和烃化合物(尤其是重组分)的蒸气压。为了平衡轻和重化合物的表征,首先根据降低的蒸气压和降低的温度0.6重新定义Pitzer偏心因子。与评估用于PR-EOS的函数相比,发现新开发的具有重新定义的偏心因数的函数可提供更准确的蒸气压预测,其平均绝对百分比偏差为1.90%,最大绝对百分比偏差59种化学物质的偏差为21.22%。此外,新开发的α函数与评估的其他现有α函数相比,具有最佳的汽化焓数据预测,平均绝对偏差为3.92%。

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