TY - JOUR
T1 - The isochoric special heat capacity for 3,3,3-trifluoroprop-1-ene (R1243zf) at temperatures from (299 to 351) K and pressures up to 11 MPa
AU - Sheng, Bowen
AU - Li, Zhenming
AU - Liu, Wei
AU - Chen, Xiaogang
AU - Zhao, Yanxing
AU - Dong, Xueqiang
AU - Yan, Han
AU - Shen, Jun
AU - Gong, Maoqiong
N1 - Publisher Copyright:
© 2020
PY - 2021/2
Y1 - 2021/2
N2 - In this paper, isochoric specific heat capacity (cv) of 3,3,3-trifluoroprop-1-ene (R1243zf) in compressed liquid states were measured using an adiabatic batch calorimeter with intermittent heating. A total of 64 isochoric specific heat capacity data points over temperatures from (299 to 351) K and pressures up to 11 MPa was obtained for liquid R1243zf. The standard uncertainties were estimated to be 12 mK for temperature, 5 kPa for pressure, 0.20% for density and 0.87% for isochoric specific heat capacity. The experimental heat capacity data show good agreements with a Helmholtz equation of states (EOS) from Ref. [2], and the average absolute relative deviation (AARD) is 2.42%. A comparison of the present cv data with values calculated by the generalized equation of Zhong et al. (2019) [3] was carried out as well, and the results show good agreements and the deviations vary from −0.98% to 3.62% and the average absolute relative deviation (AARD) is 0.89%. Compared with the Helmholtz EOS, the generalized equation gives a better description for the data in this work.
AB - In this paper, isochoric specific heat capacity (cv) of 3,3,3-trifluoroprop-1-ene (R1243zf) in compressed liquid states were measured using an adiabatic batch calorimeter with intermittent heating. A total of 64 isochoric specific heat capacity data points over temperatures from (299 to 351) K and pressures up to 11 MPa was obtained for liquid R1243zf. The standard uncertainties were estimated to be 12 mK for temperature, 5 kPa for pressure, 0.20% for density and 0.87% for isochoric specific heat capacity. The experimental heat capacity data show good agreements with a Helmholtz equation of states (EOS) from Ref. [2], and the average absolute relative deviation (AARD) is 2.42%. A comparison of the present cv data with values calculated by the generalized equation of Zhong et al. (2019) [3] was carried out as well, and the results show good agreements and the deviations vary from −0.98% to 3.62% and the average absolute relative deviation (AARD) is 0.89%. Compared with the Helmholtz EOS, the generalized equation gives a better description for the data in this work.
KW - Adiabatic calorimeter
KW - Compressed liquid
KW - Isochoric specific heat capacity
KW - R1243zf
UR - http://www.scopus.com/inward/record.url?scp=85093935406&partnerID=8YFLogxK
U2 - 10.1016/j.jct.2020.106319
DO - 10.1016/j.jct.2020.106319
M3 - Article
AN - SCOPUS:85093935406
SN - 0021-9614
VL - 153
JO - Journal of Chemical Thermodynamics
JF - Journal of Chemical Thermodynamics
M1 - 106319
ER -