Influence of Isomeric Composition and Sample Handling on the Liquid Density of Hydrofluorethers Measured by Vibrating Tube Densimeter at 0.1 MPa

IF 2.5 4区 工程技术 Q3 CHEMISTRY, PHYSICAL
Olga Prokopová, Aleš Blahut, Jan Hajduch, Kateřina Kučnirová, Miroslav Čenský, Ali Aminian, Markus Richter, Václav Vinš
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Abstract

Hydrofluoroethers (HFEs) represent a new family of promising engineering fluids suitable for technical cleaning and cooling of electronic and magnetic devices or as admixtures in refrigerant blends. Here, we report accurate data for the liquid density at 0.1?MPa and temperatures from \(273.15\,\text{K}\) to \(343.15\,\text{K}\) for a series of five HFEs, namely, HFE-7000, HFE-7100, HFE-7200, HFE-7300, and HFE-7500. A highly sensitive vibrating tube densimeter with a borosilicate glass U-tube calibrated according to the procedure by Prokopová et al. (J Chem Thermodyn 173:106855, 2022) provided density data with an expanded uncertainty (\(k=2\)) of \(0.13\,\text{kg}\cdot \text{m}^{-3}\). Influences such as sample degassing, water content, or sample temperature before its dosing into the densimeter are discussed. Thanks to the high sensitivity of the used densimeter, an unexpected shift in the density of different HFE-7100 and HFE-7200 liquid samples was detected. Unlike other HFEs, HFE-7100 and HFE-7200 are mixtures of two hardly separable isomers, which were so far considered having identical thermophysical properties. Utilizing nuclear magnetic resonance spectroscopy, the ratio of n-isomer and iso-isomer was inspected for various liquid samples. In the range of iso-isomer mole fraction from 0.61 to 0.77, the new measurements revealed density differences of more than \(5\,\text{kg}\cdot \text{m}^{-3}\) in case of HFE-7100 and of about \(3\,\text{kg}\cdot \text{m}^{-3}\) in case of HFE-7200. Consequently, for some applications, the properties of different HFE isomers cannot be considered identical. The Rackett-type correlation for the saturated liquid density was fitted using the new and the literature data.

Abstract Image

异构体组成和样品处理对0.1 MPa振动管密度计测氢氟醚液体密度的影响
氢氟醚(hfe)是一类有前途的新型工程流体,适用于电子和磁性设备的技术清洗和冷却,或作为制冷剂混合物的外加剂。在这里,我们报告了0.1?HFE-7000、HFE-7100、HFE-7200、HFE-7300、HFE-7500的温度范围为\(273.15\,\text{K}\) ~ \(343.15\,\text{K}\)。根据prokopov等人(J Chem Thermodyn 173:106855, 2022)的程序校准的高灵敏度振动管密度计提供了密度数据,扩展不确定度(\(k=2\))为\(0.13\,\text{kg}\cdot \text{m}^{-3}\)。影响,如样品脱气,水的含量,或样品温度前,其剂量到密度计进行了讨论。由于所用密度计的高灵敏度,检测到不同HFE-7100和HFE-7200液体样品的密度发生了意想不到的变化。与其他hfe不同,HFE-7100和HFE-7200是两种难以分离的异构体的混合物,这两种异构体迄今为止被认为具有相同的热物理性质。利用核磁共振波谱法测定了不同液体样品中n-异构体和同位异构体的比例。在同分异构体摩尔分数从0.61到0.77的范围内,新的测量结果表明,HFE-7100的密度差异大于\(5\,\text{kg}\cdot \text{m}^{-3}\), HFE-7200的密度差异约为\(3\,\text{kg}\cdot \text{m}^{-3}\)。因此,在某些应用中,不同的HFE异构体的性质不能被认为是相同的。利用新数据和文献数据拟合了饱和液体密度的racket型相关。
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来源期刊
CiteScore
4.10
自引率
9.10%
发文量
179
审稿时长
5 months
期刊介绍: International Journal of Thermophysics serves as an international medium for the publication of papers in thermophysics, assisting both generators and users of thermophysical properties data. This distinguished journal publishes both experimental and theoretical papers on thermophysical properties of matter in the liquid, gaseous, and solid states (including soft matter, biofluids, and nano- and bio-materials), on instrumentation and techniques leading to their measurement, and on computer studies of model and related systems. Studies in all ranges of temperature, pressure, wavelength, and other relevant variables are included.
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