...
首页> 外文期刊>Journal of structural chemistry >BULK PROPERTIES OF A LIQUID PHASE MIXTURE{ETHYLENE GLYCOL+TERT-BUTANOL} IN THE TEMPERATURE RANGE 278.15-348.15 K AND PRESSURES OF 0.1-100 MPa. II. MOLAR ISOTHERMAL COMPRESSIBILITY, MOLAR ISOBARIC EXPANSIBILITY, THERMAL PRESSURE COEFFICIENT, AND INTERNAL PRESSURE
【24h】

BULK PROPERTIES OF A LIQUID PHASE MIXTURE{ETHYLENE GLYCOL+TERT-BUTANOL} IN THE TEMPERATURE RANGE 278.15-348.15 K AND PRESSURES OF 0.1-100 MPa. II. MOLAR ISOTHERMAL COMPRESSIBILITY, MOLAR ISOBARIC EXPANSIBILITY, THERMAL PRESSURE COEFFICIENT, AND INTERNAL PRESSURE

机译:在278.15-348.15 K的温度范围和0.1-100 MPa的压力下,液相混合物{乙烯乙二醇+叔丁醇}的本体性能。二。摩尔等温可压缩性,摩尔等静压膨胀性,热压系数和内部压力

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Based on the experimental data, the molar isothermal compressibilities, molar isobaric expansibilities, thermal pressure coefficients, internal pressures of a liquid phase mixture {ethylene glycol (1) + tertbutanol(2)} are calculated for a wide spectrum of compositions in the range of pressures of 0.1-100 MPa and temperatures of 278.15-323.15 K. Shown that the dependences of molar isothermal compressibilities K_(T, m), molar isobaric expansibilities E_(P, m), and isochoric thermal pressure coefficients β on the mole fraction of tert-butanol in the mixture are characterized by the absence of extrema typical of aqueous systems. The manifestation of negative partial expansibility and negative partial expansibility of ethylene glycol in the mixture is found. The thermal pressure coefficients decrease with an increase in the mole fraction of tertbutanol at all pressures and temperatures. A rise in the pressure increases the thermal pressure coefficient, while a rise in the temperature decreases its value due to a decrease of free space in the mixture. An increase in the concentration of tert-butanol leads to an increase in the negative temperature coefficient of internal pressure ΔP_(int)/ΔT, which indicates a weakening of intermolecular interaction at these compositions.
机译:根据实验数据,计算了范围为〜-1的各种组成的摩尔等温压缩性,等压摩尔膨胀性,热压系数,液相混合物{乙二醇(1)+叔丁醇(2)}的内部压力。 0.1-100 MPa的压力和278.15-323.15 K的温度。表明摩尔等温可压缩性K_(T,m),摩尔等压膨胀率E_(P,m)和等容热压系数β对摩尔比的依赖性混合物中的叔丁醇的特征是不存在水性体系的典型极端值。发现混合物中乙二醇的负部分膨胀性和负部分膨胀性的表现。在所有压力和温度下,热压系数都随叔丁醇摩尔分数的增加而降低。压力的升高会增加热压系数,而温度的升高则会由于混合物中自由空间的减少而降低其值。叔丁醇浓度的增加导致内部压力的负温度系数ΔP_(int)/ΔT升高,这表明这些组合物的分子间相互作用减弱。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号