2015
DOI: 10.1021/acs.jced.5b00009
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Density and Surface Tension of Binary Mixtures of 2,2,4-Trimethylpentane + n-Heptane, 2,2,4-Trimethylpentane + n-Octane, Ethyl Acetate + Benzene, and Butanenitrile + Benzene from (293.15 to 323.15) K

Abstract: We measure the density and surface tension of four binary mixtures of 2,2,4-trimethylpentane + n-heptane and n-octane, and butanenitrile and ethyl acetate + benzene, from (293.15 to 323.15) K at atmospheric pressure. Densities are measured using a vibrating tube densimeter while surface tension is measured with a drop volume tensiometer. Excess molar volumes and surface tension deviations are calculated from the experimental measurements. Results are correlated with Redlich−Kister type equations.

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Cited by 27 publications
(11 citation statements)
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References 69 publications
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“…, Muratov [54]; , Sugden [27]; , Schmidt et al [32]; , Prabhakar et al [55]; , Bonnet and Pike [56]; , Součková et al [26]; , Lopez-Lazaro et al [57]. Error bars representing the expanded (k = 2) uncertainty are shown exemplarily for the present SLS data between about (2 and 4)% larger than our experimental data, whereby the deviations tend to decrease with increasing temperature.…”
Section: Surface Tensionsupporting
confidence: 59%
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“…, Muratov [54]; , Sugden [27]; , Schmidt et al [32]; , Prabhakar et al [55]; , Bonnet and Pike [56]; , Součková et al [26]; , Lopez-Lazaro et al [57]. Error bars representing the expanded (k = 2) uncertainty are shown exemplarily for the present SLS data between about (2 and 4)% larger than our experimental data, whereby the deviations tend to decrease with increasing temperature.…”
Section: Surface Tensionsupporting
confidence: 59%
“…The same method was utilized by Prabhakar et al [55] who specified an uncertainty of 0.35 % for the surface tension related to the interface between liquid benzene and air. Such an experimental situation was also given in the measurements from Bonnet and Pike [56] and Součková et al [26] using the Wilhelmy plate technique with uncertainties of about 1.5 % in each case as well as those from Lopez-Lazaro et al [57] employing the drop volume method with associated uncertainties of approximately 0.1 %. It is expected that most of the above experimental data sets are also included in the correlation developed by Mulero et al [36] who regarded a larger yet undifferentiated database for benzene than it is given here.…”
Section: Surface Tensionmentioning
confidence: 69%
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“…As shown in liquid absorption tests of untreated PET and PA (SI, Table S1), the untreated PA absorbed slightly more high surface tension liquid, e.g., water [38] (72.09 mN m -1 ) but less low surface tension liquid, e.g., acetonitrile and ethyl acetate, than untreated PET. The surface tension of the functional ink (23.9 mN m -1 ) is very similar to acetonitrile (27.76 mN m -1 ) [38] and ethyl acetate (24.11 mN m -1 ) [39]. This means the PET might have stronger ink-filament interaction than PA due to better wettability with the functional ink.…”
Section: Resultsmentioning
confidence: 88%
“…For mixing properties, the estimated uncertainties are 6•10 -8 m 3 mol -1 for excess molar volume, 0.46 % for viscosity deviation, 8.6•10 −4 for refractive index deviation and 0.96•10 −12 Pa -1 for excess isentropic compressibility. [6], () [7], () [8], () [9], () [10], () [11], () [12], () [13], () [14], () [15], () [16], () [17], () [18], () [19], () [20], () [21], () [22], () [23], () [24], () [25], () [26], () [27], () [28], () [29], () [30], () [31], () [32], () [33], () [34], () [35], () [36], () [37], () [38], () [39], () [40], () [41], () [42], () [43]. The lines are a guide to the eye.…”
Section: Methodsmentioning
confidence: 99%