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首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Isobaric Heat Capacity Measurements for Dimethyl Ether and 1,1-Difluoroethane in the Liquid Phase at Temperatures from 305 K to 365 K and Pressures up to 5 MPa
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Isobaric Heat Capacity Measurements for Dimethyl Ether and 1,1-Difluoroethane in the Liquid Phase at Temperatures from 305 K to 365 K and Pressures up to 5 MPa

机译:在305 K至365 K的温度和最高5 MPa的压力下液相中二甲醚和1,1-二氟乙烷的等压热容测量

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摘要

The isobaric heat capacity of dimethyl ether and 1,1-difluoroethane in liquid phase were measured at temperatures from 305 K to 365 K and pressures up to 5 MPa. A heat conduction calorimeter was applied in the measurements and a total of 81 data points for dimethyl ether and 78 data points for 1,1-difluoroethane were obtained. The uncertainties of measured heat capacity were estimated to be 2.1% for dimethyl ether and 1.8% for 1,1-difluoroethane, respectively. To reproduce the experimental data, a uniform equation was proposed. The equation showed average absolute deviations of 0.17 % for dimethyl ether and 0.30 % for 1,1-difluoroethane from the experimental values. Saturated liquid heat capacities for both experimental subjects were also obtained by extrapolating the equation to saturated pressures. Finally, comparisons have been done between our experimental data and literature data and fundamental equation of states.
机译:在305 K至365 K的温度和最高5 MPa的压力下测量了二甲醚和1,1-二氟乙烷在液相中的等压热容量。在测量中使用了导热量热计,总共获得了二甲醚的81个数据点和1,1-二氟乙烷的78个数据点。测得的热容量的不确定性据估计分别为:二甲醚为2.1%,1,1-二氟乙烷为1.8%。为了重现实验数据,提出了一个统一的方程。该方程式显示,相对于实验值,二甲醚的平均绝对偏差为0.17%,1,1-二氟乙烷的平均绝对偏差为0.30%。通过将方程外推到饱和压力,也获得了两个实验对象的饱和液体热容量。最后,我们的实验数据与文献数据和基本状态方程进行了比较。

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