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Measurements and correlation of saturated vapor pressure of a new sulfur-free odorant for liquefied petroleum gas, 2-Hexyne, and bubble point pressure for three binaries, Ehtane-2-Hexyne, Propane-2-Hexyne, and Butane-2-Hexyne

Tsuji, Tomoya and Kiew, Peck Loo and Matsukawa, Hiroaki and Hoshina, Taka Aki and Otake, Katsuto (2023) Measurements and correlation of saturated vapor pressure of a new sulfur-free odorant for liquefied petroleum gas, 2-Hexyne, and bubble point pressure for three binaries, Ehtane-2-Hexyne, Propane-2-Hexyne, and Butane-2-Hexyne. Journal of the Japan Petroleum Institute, 66 (3). pp. 69-80. ISSN 1346-8804

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Official URL: http://dx.doi.org/10.1627/jpi.66.69

Abstract

2-Hexyne is a potential sulfur-free odorant for LPG. Saturated vapor pressure of 2-hexyne at 273.14 K - 313.14 K, and bubble point pressure for three binaries, ethane-2-hexyne, propane-2-hexyne, and butane-2-hexyne were measured using a static apparatus at 273.15 K, 303.15 K, and 313.15 K. The parameter in the Peng-Robinson equation od state was re-determined for 2-hexyne using the saturated vapor pressure data. The parameters and the excluded volumes in the PR equation were also re-determined for ethane, propane, and butane using the saturated vapor pressure and liquid density data. The binary parameters were evaluated by fitting the bubble point pressure data for three binaries. Quaternary vapor-liquid equilibrium was estimated for 45 kg of LPG, with the mass ratio of ethane : propane : butane = 0.6000 : 97.07 : 1.700 containing 50.00 ppm of 2-hexyne, in a household LPG cylinder with inner volume of 117.50 L. The mole fraction of 2-hexyne was evaluated as 3.939 x 10-9. in the vapor phase at 273.15 K, and increased by 2.49 times and 3.4 times at 303.15 K, and 313.15 K, respectively.

Item Type:Article
Uncontrolled Keywords:2-Hexyne, bubble point pressure, liquefied petroleum gas, Peng-Robinson equation of state, saturated vapor pressure, sulfur-free odorant
Subjects:T Technology > TJ Mechanical engineering and machinery
Divisions:Malaysia-Japan International Institute of Technology
ID Code:104789
Deposited By: Yanti Mohd Shah
Deposited On:25 Mar 2024 08:44
Last Modified:25 Mar 2024 08:44

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