Measurements of the heat capacity of an azeotropic mixture of water, ethanol and toluene from 79 to 320K
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy,General Chemical Engineering
Reference22 articles.
1. New Batch Cells Adapted To Measure Saturated Heat Capacities of Liquids
2. Toluenesulfonate-acyl esters of ethylene glycol and other 1,2-diols as industrial antioxidants with cupric ion
3. Behaviour of butyl ether as entrainer for the extractive distillation of the azeotropic mixture propanone+diisopropyl ether. Isobaric VLE data of the azeotropic components with the entrainer
4. Vapor–liquid equilibria for methanol+pentyl acetate, vinyl acetate+pentyl acetate, and methanol+isopentyl acetate
5. Experiments of extractive distillation at laboratory scale for the rupture of the azeotropic mixture acetone+isopropyl ether
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1. Isobaric Vapor–Liquid Equilibrium for Binary Systems of Toluene + Ethanol and Toluene + Isopropanol at (101.3, 121.3, 161.3, and 201.3) kPa;Journal of Chemical & Engineering Data;2011-11-29
2. Effect of bioethanol as an alternative fuel on the emissions reduction characteristics and combustion stability in a spark ignition engine;Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering;2009-07-01
3. Homogeneity of the water+ethanol+toluene azeotrope at 101.3kPa;Fluid Phase Equilibria;2008-04
4. Heat Capacities and Thermodynamic Functions of the Aqueous Li2B4O7 Solution in the Temperature Range from 80 K to 355 K;Journal of Chemical & Engineering Data;2007-04-11
5. Heat Capacities and Thermodynamic Properties of a H2O + Li2B4O7 Solution in the Temperature Range from 80 to 356 K;Journal of Solution Chemistry;2006-08-29
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