首页> 外文期刊>Physical chemistry chemical physics: PCCP >Determination of derived volumetric properties and heat capacities at high pressures using two density scaling based equations of state. Application to dipentaerythritol hexa(3,5,5-trimethylhexanoate)
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Determination of derived volumetric properties and heat capacities at high pressures using two density scaling based equations of state. Application to dipentaerythritol hexa(3,5,5-trimethylhexanoate)

机译:使用基于状态的三个密度缩放的状态的高压在高压下衍生体积性能和热容。 施用到二季戊四醇六胞(3,5,5-三甲基己酸酯)

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摘要

Reliable equations of state (EoS) together with heat capacities at atmospheric pressure make it possible to determine properties such as the isobaric thermal expansivity, compressibility, both isothermal and isentropic, high pressure isobaric heat capacities or speed of sound. In this work, we analysed the reliability of two density scaling based EoS, Power-Law Density Scaling (PLDS) and General Density Scaling (GDS), and the Tammann-Tait EoS to determine these quantities. For this aim, dipentaerythritol hexa(3,5,5-trimethylhexanoate), diPEiC(9), was chosen because it has been recently proposed as a candidate to fill the gap of reference fluids suitable for high pressure viscometer calibration or their verification. New experimental densities measured between (283.15 and 398.15) K at pressures up to 70 MPa together with isobaric heat capacities between (282.93 and 399.92) K and thermal conductivities between (283 and 333) K at 0.1 MPa of diPEiC(9) are reported. Literature relative volumes up to 400 MPa for this compound were also used. The three EoSs give rise to coherent values of the above properties. The most difficult property to describe is isobaric thermal expansivity for which the isobaric curves can present minima and/or maxima and the isotherm curves can cross at different pressures. The loci of the maxima of the isobaric thermal expansivity in p-T diagrams of the GDS and PLDS EoSs are very close.
机译:状态(EOS)的可靠方程在大气压下与热能进行热量,使得可以确定等性的热膨胀性,可压缩性,等温和熵的性能等性能,可以确定等温和等值的高压等值性的热量或声音速度。在这项工作中,我们分析了基于两个密度缩放的EOS,Power-Law密度缩放(PLD)和一般密度缩放(GDS)的可靠性,以及Tammann-Tait EOS以确定这些数量。为此目的,选择二季戊四醇六叶(3,5,5-三甲基己酸酯),Dipeic(9),因为最近提出作为填充适合高压粘度计校准的参考流体间隙或其验证的候选者。报道,在0.1MPa的DIPEIC(9)之间的(283和333)k之间,在高达70mPa的压力下测量(283.15和398.15)k之间测量的新的实验密度,其与(282.93和399.92)k和(283和333)k之间的热导体之间的热容量。还使用该化合物高达400MPa的文献相对体积。三个eoss产生上述属性的相干价值。描述的最困难的财产是等异的热膨胀性,其异曲线曲线可以呈现最小值和/或最大值,并且等温曲线可以在不同的压力下交叉。在GDS和PLDS eoss的P-T图中的等因素热扩展性的最大值的基因座非常接近。

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    Univ Santiago de Compostela Dept Fis Aplicada Grp NaFoMat Lab Propiedades Termofis E-15782 Santiago De Compostela Spain;

    Univ Santiago de Compostela Dept Fis Aplicada Grp NaFoMat Lab Propiedades Termofis E-15782 Santiago De Compostela Spain;

    Univ Vigo Fac Ciencias Dept Fis Aplicada E-36310 Vigo Spain;

    Univ Santiago de Compostela Dept Fis Aplicada Grp NaFoMat Lab Propiedades Termofis E-15782 Santiago De Compostela Spain;

    Univ Santiago de Compostela Dept Fis Aplicada Grp NaFoMat Lab Propiedades Termofis E-15782 Santiago De Compostela Spain;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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