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Molar volume, thermal expansivity and isothermal compressibility of trans-decahydronaphthalene up to 200MPa and 446K
引用本文:朱虎刚,刘志华,田宜灵,薛源,阴亮. Molar volume, thermal expansivity and isothermal compressibility of trans-decahydronaphthalene up to 200MPa and 446K[J]. 中国物理, 2005, 14(12): 2433-2439
作者姓名:朱虎刚  刘志华  田宜灵  薛源  阴亮
作者单位:Department of Chemistry, School of Science, Tianjin University, Tianjin 300072, China;Department of Chemistry, School of Science, Tianjin University, Tianjin 300072, China;Department of Chemistry, School of Science, Tianjin University, Tianjin 300072, China;Department of Chemistry, School of Science, Tianjin University, Tianjin 300072, China;Department of Chemistry, School of Science, Tianjin University, Tianjin 300072, China
摘    要:The molar volume isotherms of trans-decahydronaphthalene (C10H18) between 293 and 446 K and at pressures from 10 to 200 MPa have been determined. A modified Tait equation of state is used to fit each experimental molar volume isotherm with a maximum average deviation of 0.029%. The thermal expansivity (cubic expansion coefficient) α and isothermal compressibility κ were determined by fitting the slopes of the isobaric curves and isotherms, respectively. The coefficients in the equation Vm=C1+C2T+C3T^2-C4p-C5pT have been fitted with an average deviation of 1.03%.

关 键 词:摩尔量 热扩散 等温压缩 十氢化萘
收稿时间:2005-04-28
修稿时间:2005-04-282005-08-24

Molar volume, thermal expansivity and isothermal compressibility of trans-decahydronaphthalene up to 200MPa and 446K
Zhu Hu-Gang,Liu Zhi-Hu,Tian Yi-Ling,Xue Yuan and Yin Liang. Molar volume, thermal expansivity and isothermal compressibility of trans-decahydronaphthalene up to 200MPa and 446K[J]. Chinese Physics, 2005, 14(12): 2433-2439
Authors:Zhu Hu-Gang  Liu Zhi-Hu  Tian Yi-Ling  Xue Yuan  Yin Liang
Affiliation:Department of Chemistry, School of Science, Tianjin University, Tianjin 300072, China
Abstract:The molar volume isotherms of {trans}-decahydronaphthalene (C_{10}H_{18}) between 293 and 446 K and at pressures from 10 to 200 MPa have been determined. A modified Tait equation of state is used to fit each experimental molar volume isotherm with a maximum average deviation of 0.029%. The thermal expansivity (cubic expansion coefficient) alpha and isothermal compressibility kappa were determined by fitting the slopes of the isobaric curves and isotherms, respectively. The coefficients in the equation V_m=C_1+C_2 T+C_3 T^2 - C_4 p - C_5 pT have been fitted with an average deviation of 1.03%.
Keywords:trans-decahydronaphthalene   Tait equation   thermal expansivity  isothermal compressbility
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