Thermodynamic investigation of several natural polyols (II)Heat capacities and thermodynamic properties of sorbitol

被引:0
作者
B. Tong
Z. C. Tan
Q. Shi
Y. S. Li
S. X. Wang
机构
[1] Chinese Academy of Science,Thermochemistry Laboratory, Dalian Institute of Chemical Physics
[2] Dalian Jiaotong University,College of Environmental Science and Engineering
[3] Graduate School of the Chinese Academy of Sciences,undefined
来源
Journal of Thermal Analysis and Calorimetry | 2008年 / 91卷
关键词
DSC; heat capacity; phase transition; sorbitol; TG-DTG; thermodynamic properties;
D O I
暂无
中图分类号
学科分类号
摘要
The low-temperature heat capacity Cp,m of sorbitol was precisely measured in the temperature range from 80 to 390 K by means of a small sample automated adiabatic calorimeter. A solid-liquid phase transition was found at T=369.157 K from the experimental Cp-T curve. The dependence of heat capacity on the temperature was fitted to the following polynomial equations with least square method. In the temperature range of 80 to 355 K, Cp,m/J K−1 mol−1=170.17+157.75x+128.03x2-146.44x3-335.66x4+177.71x5+306.15x6, x= [(T/K)−217.5]/137.5. In the temperature range of 375 to 390 K, Cp,m/J K−1 mol−1=518.13+3.2819x, x=[(T/K)-382.5]/7.5. The molar enthalpy and entropy of this transition were determined to be 30.35±0.15 kJ mol−1 and 82.22±0.41 J K−1 mol−1 respectively. The thermodynamic functions [HT-H298.15] and [ST-S298.15], were derived from the heat capacity data in the temperature range of 80 to 390 K with an interval of 5 K. DSC and TG measurements were performed to study the thermostability of the compound. The results were in agreement with those obtained from heat capacity measurements.
引用
收藏
页码:463 / 469
页数:6
相关论文
共 50 条
[41]   Modeling the thermomechanical effects of crystallization in natural rubber: II. Elementary thermodynamic properties [J].
Negahban, M .
INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2000, 37 (20) :2791-2809
[42]   Low-temperature heat capacity and thermodynamic properties of natural polylithionite [J].
I. E. Paukov ;
Yu. A. Kovalevskaya ;
I. A. Kiseleva ;
T. N. Shuriga ;
V. N. Ikorskii .
Geochemistry International, 2007, 45 :926-930
[43]   Low-temperature heat capacity and thermodynamic properties of natural annite [J].
I. E. Paukov ;
Yu. A. Kovalevskaya ;
I. A. Kiseleva ;
T. N. Shuriga .
Geochemistry International, 2006, 44 :841-845
[44]   Low-temperature heat capacity and thermodynamic properties of natural polylithionite [J].
Paukov, I. E. ;
Kovalevskaya, Yu. A. ;
Kiseleva, I. A. ;
Shuriga, T. N. ;
Ikorskii, V. N. .
GEOCHEMISTRY INTERNATIONAL, 2007, 45 (09) :926-930
[45]   Heat capacities and thermodynamic functions of p-chlorobenzoic acid [J].
Tan, ZC ;
Sun, LX ;
Meng, SH ;
Li, L ;
Xu, F ;
Yu, P ;
Liu, BP ;
Zhang, JB .
JOURNAL OF CHEMICAL THERMODYNAMICS, 2002, 34 (09) :1417-1429
[46]   Heat capacities and thermodynamic functions of neodymia and samaria doped ceria [J].
Neilsen, Grace ;
Rosen, Peter F. ;
Dickson, Matthew S. ;
Popovic, Marko ;
Schliesser, Jacob ;
Hansen, Lee D. ;
Navrotsky, Alexandra ;
Woodfield, Brian F. .
JOURNAL OF CHEMICAL THERMODYNAMICS, 2021, 158
[47]   Thermodynamic investigation of room temperature ionic liquid -: Heat capacity and thermodynamic functions of BPBF4 [J].
Zhang, Z. H. ;
Sun, L. X. ;
Tan, Z. C. ;
Xu, F. ;
Lv, X. C. ;
Zeng, J. L. ;
Sawada, Y. .
JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2007, 89 (01) :289-294
[48]   Molar heat capacities and thermodynamic functions for difluoromethyleneoxy-bridged liquid crystalline compounds [J].
Xuelin Wang ;
Jie Du ;
Han Xiao ;
Guanglong Zou .
Journal of Thermal Analysis and Calorimetry, 2018, 131 :1587-1595
[50]   Heat capacities and thermodynamic functions of CdNb2O6 and CdTa2O6 [J].
Mustafa İlhan .
Journal of Thermal Analysis and Calorimetry, 2022, 147 :12383-12389