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首页> 外文期刊>Fuel >Isobaric heat capacities of a methane (1) + propane (2) mixture by differential scanning calorimetry at near-critical and supercritical conditions
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Isobaric heat capacities of a methane (1) + propane (2) mixture by differential scanning calorimetry at near-critical and supercritical conditions

机译:通过差分扫描量热法在接近关键和超临界条件下通过差示扫描量热容量的同位热容量

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摘要

Isobaric heat capacity data are needed to test and improve thermodynamic models of natural gas over wide ranges of temperature and pressure. Measurements are reported here at temperatures between (184 and 421) K and pressures between (5 and 32) MPa for supercritical mixtures of methane (1) + propane (2) at x(1) = 0.950 (+/- 0.005). Estimated relative uncertainties in the measured heat capacities range from (1.8 to 4.5)%. In addition, measurements at temperatures of (184, 190, 197, 203 and 209) K were performed at pressures (1.67 to 2.39) MPa higher than saturation conditions to estimate the heat capacity of the mixture at the bubble point. The binary mixture data were compared with the predictions of three models: the Groupe Europen de Recherches Gazieres (GERG) 2008 multi-parameter equation of state (EOS), the Peng-Robinson (PR) EOS used widely by chemical engineers, and the Statistical Associating Fluid Theory (SAFT)-gamma Mie EOS incorporating group contributions. Among the three models, the PR EOS was found to describe the heat capacity values best. A brief investigation indicated that the Joback and Reid method that the SAFT-gamma Mie EOS is based on fails to accurately predict the ideal gas heat capacity of methane at cryogenic temperatures, while the inaccuracy of the GERG-2008 EOS stems from the residual part of the methane (1) + propane (2) mixing functions.
机译:需要同感热容量数据来测试和改善在宽温度和压力范围内天然气的热力学模型。这里在X(1)= 0.950(+/- 0.005)的甲烷(1)+丙烷(2)的超临界混合物之间的温度(5和321)k和(5和32)MPa之间的温度的温度下报告测量。测量的热量估计的相对不确定性范围为(1.8至4.5)%。另外,在高于饱和条件的压力(1.67-2.39)MPa(1.67至2.39)MPa的温度下进行(184,190,197,203和209)K的测量,以估计在气泡点处的混合物的热量。将二进制混合物数据与三种模型的预测进行比较:Groupeeuropen de Recherches Gazieres(GERR)2008年国家(EOS)的多参数方程,彭罗宾逊(PR)eos广泛用于化学工程师,以及统计关联流体理论(SAFT)-Gamma Mie EOS纳入群体贡献。在这三种模型中,发现PR EOS最好地描述热量值。简要调查表明,Saft-Gamma Mie EOS基于Waback和Reid方法,无法准确地预测在低温温度下甲烷的理想气体热容量,而Gerg-2008 EOS的不准确性源于残余部分甲烷(1)+丙烷(2)混合功能。

著录项

  • 来源
    《Fuel》 |2021年第1期|119840.1-119840.10|共10页
  • 作者单位

    Univ Western Australia Dept Chem Engn Fluid Sci & Resources Div Crawley WA 6009 Australia;

    Univ Western Australia Dept Chem Engn Fluid Sci & Resources Div Crawley WA 6009 Australia;

    Univ Western Australia Dept Chem Engn Fluid Sci & Resources Div Crawley WA 6009 Australia;

    Monash Univ Dept Civil Engn Resources Engn Program Clayton Vic 3800 Australia;

    Univ Western Australia Dept Chem Engn Fluid Sci & Resources Div Crawley WA 6009 Australia;

    Murdoch Univ Chem Dept Murdoch WA 6150 Australia;

    Murdoch Univ Chem Dept Murdoch WA 6150 Australia;

    Univ Western Australia Dept Chem Engn Fluid Sci & Resources Div Crawley WA 6009 Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Heat capacity; Methane; Propane; Differential scanning calorimeter; Natural gas; Modelling;

    机译:热容量;甲烷;丙烷;差示扫描量热计;天然气;建模;
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