Samoilov Vadim, Lavrentev Vladimir, Sultanova Madina, Ramazanov Dzhamalutdin, Kozhevnikov Andrey, Shandryuk Georgiy, Kniazeva Mariia, Maximov Anton
Topchiev Institute of Petrochemical Synthesis, Russian Academy of Sciences, 29 Leninsky Prospect, 119991 Moscow, Russia.
Molecules. 2023 Nov 8;28(22):7483. doi: 10.3390/molecules28227483.
The study is dedicated to the consideration of lower alkyl ethers of glycerol as potential components of low-melting technical fluids (e.g., heat transfer fluids, hydraulic fluids, aircraft de-icing fluids, etc.). Four isomeric mixtures of glycerol ethers (GMME-monomethyl; GDME-dimethyl; GMEE-monoethyl; GDEE-diethyl) were synthesized from epichlorohydrin and methanol/ethanol in the presence of sodium and subjected to detailed characterization as pure compounds and as aqueous solutions (30-90 vol%). The temperature and concentration dependencies of density, viscosity, cloud point, boiling range, specific heat capacity, thermal conductivity, and rubber swelling were obtained. On the basis of the data obtained, a comparison was made between the aqueous solutions of glycerol ethers and of other common bases for low-melting liquids (glycerol, ethylene glycol, and propylene glycol). Pure glycerol ethers could potentially be used as technical fluids in a very wide temperature range-from -114 to 150 °C. It was further demonstrated that in low temperature applications (e.g., in low-temperature chiller systems) the glycerol-ether-based aqueous heat transfer fluids could provide enhanced efficiency when compared to the glycerol- or propylene-glycol-based ones due to their lower viscosities and favorable environmental properties.
该研究致力于探讨甘油的低级烷基醚作为低熔点工业流体(如传热流体、液压流体、飞机除冰液等)的潜在成分。在钠的存在下,由环氧氯丙烷与甲醇/乙醇合成了四种甘油醚的异构体混合物(GMME - 单甲基;GDME - 二甲基;GMEE - 单乙基;GDEE - 二乙基),并对其作为纯化合物以及水溶液(30 - 90体积%)进行了详细表征。获得了密度、粘度、浊点、沸程、比热容、热导率和橡胶溶胀的温度和浓度依赖性数据。基于所获得的数据,对甘油醚水溶液与其他用于低熔点液体的常见基体(甘油、乙二醇和丙二醇)进行了比较。纯甘油醚有可能在非常宽的温度范围(从 - 114至150°C)用作工业流体。进一步证明,在低温应用(如低温冷却系统)中,基于甘油醚的水性传热流体与基于甘油或丙二醇的流体相比,由于其较低的粘度和良好的环境特性,可提供更高的效率。