首页> 外文期刊>The Journal of Chemical Thermodynamics >Apparatus based on a compact single-sinker densimeter and measurements of the (p,ρ,T) relation of difluoromethane
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Apparatus based on a compact single-sinker densimeter and measurements of the (p,ρ,T) relation of difluoromethane

机译:基于紧凑型单沉密度计和二氟甲烷(p,ρ,T)关系测量的装置

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摘要

An apparatus for accurate pressure-density-temperature (p,ρ,T) measurements was modified according to the requirement that liquid can be measured. The new instrument is based on a compact single-sinker densimeter which applies the Archimedes' buoyancy principle. The whole apparatus includes the magnetic suspension balance, thermostat system, measured fluid filling system, temperature and pressure measuring system, vacuum and auxiliary system. It covers a density range from (0 to 2000) kg ? m~(-3) at temperatures from (210 to 300) K and pressures up to 6.0 MPa. In order to verify the new apparatus, comprehensive (p,ρ,T) measurements of pure ethane were carried out. The experimental data were compared with selected literature data and the results demonstrate the good performance of the apparatus. Comprehensive (p,ρ,T) measurements on high purity difluoromethane (HFC32) were measured along different isotherms from T = (215 to 293) K and pressures up to 2.2 MPa. The relative standard uncertainty in density is (0.01 to 0.08)% for vapor and 0.01% for liquid. The standard uncertainty in temperature is 5m? K, and that in pressure is (177 and 493) Pa for vapor and liquid, respectively. The experimental results were compared with selected literature data and were correlated by the virial equation and Tait equation for vapor and liquid, respectively. The calculated results show good agreement with the experimental values.
机译:根据可以测量液体的要求,对用于精确测量压力-密度-温度(p,ρ,T)的设备进行了改进。新仪器基于紧凑的单沉密度计,该密度计应用了阿基米德的浮力原理。整个设备包括磁悬浮天平,恒温器系统,被测流体填充系统,温度和压力测量系统,真空和辅助系统。它覆盖的密度范围是(0到2000)kg? m〜(-3)在(210至300)K的温度和高达6.0 MPa的压力下。为了验证新设备,对纯乙烷进行了全面的(p,ρ,T)测量。将实验数据与选定的文献数据进行比较,结果证明了该设备的良好性能。沿T =(215至293)K和最高压力为2.2 MPa的不同等温线对高纯度二氟甲烷(HFC32)进行了全面(p,ρ,T)测量。密度的相对标准不确定度是蒸气的(0.01至0.08)%,液体的是0.01%。温度的标准不确定度是5m? K,蒸汽和液体的压力分别为(177和493)Pa。将实验结果与选定的文献数据进行比较,并分别通过蒸气和液体的病毒方程和泰特方程进行关联。计算结果与实验值吻合良好。

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