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- W4387673151 abstract "R1336mzz(Z) and R1336mzz(E), which are cis- and trans-1,1,1,4,4,4-hexa-fluoro-butene, respectively, can be utilized in waste heat recovery systems and solar–thermal systems or mixed with other refrigerants to reduce the global warming potential. This paper presents surface tensions of R1336mzz(Z) and R1336mz(E) in the temperature range of 228–383 K, obtained using a differential capillary rise method. The measurement uncertainty ranges from 0.10 to 0.44 mN m–1 (k = 2). When the R1336mzz(E) data are reduced, the temperature dependence of the parachor is indicated below 300 K, which is the range where saturation density measurements have not been reported. Therefore, the saturation density below 300 K is modified, and the surface tension data are reobtained. Based on the measured surface tension, the empirical correlations for R1336mzz(Z) and R1336mzz(E) are σ = 54.29 (1 – T/Tcrit)1.26 and σ = 55.47 (1 – T/Tcrit)1.27, respectively, where Tcrit is the critical temperature, that is, 444.5 and 403.53 K. Additionally, the substance-specific parameter parachors are determined to be 231.2 and 221.7 for R1336mzz(Z) and R1336mzz(E), respectively." @default.
- W4387673151 created "2023-10-17" @default.
- W4387673151 creator A5017858684 @default.
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- W4387673151 date "2023-10-16" @default.
- W4387673151 modified "2023-10-17" @default.
- W4387673151 title "Surface Tension and Parachor of cis- and trans-1,1,1,4,4,4-Hexafluorobutene [R-1336mzz(Z) and R-1336mzz(E)]" @default.
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- W4387673151 doi "https://doi.org/10.1021/acs.jced.3c00436" @default.
- W4387673151 hasPublicationYear "2023" @default.
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