Development of Thermophysical Property Models for Aqueous Amino Acid Solutions

  • Kim, Jun-Woo
  • Lee, Kang Hoon
  • Park, Woo Hyung
  • Hong, Seok Bin
  • Park, Chanhun
  • ... Kim, Jin-Kuk
  • 외 1명
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초록

Models for the calculation of density, heat capacity, viscosity, and thermal conductivity of amino acid aqueous solutions were proposed. Density, heat capacity, viscosity, and thermal conductivity of pure amino acid liquids were predicted by the Rackett model, Watson model, Heu-Sheu-Tu group contribution method, and Sato-Riedel model, respectively. Mixing rule equations required for the prediction of density, heat capacity, viscosity, and thermal conductivity of amino acid aqueous solutions were suggested. Density, heat capacity, viscosity, and thermal conductivity data of 930, 975, 450, and 167 data points, respectively, for 20 amino acid aqueous solution systems were regressed to determine the most appropriate mixing rule parameters.

키워드

Amino acid solutionsDensityHeat capacityThermal conductivityViscosityMOLAR HEAT-CAPACITIESL-ARGININETHERMODYNAMIC PROPERTIESTHERMAL-CONDUCTIVITYATMOSPHERIC-PRESSUREL-ISOLEUCINEL-ALANINEL-PROLINEL-VALINEVISCOSITY
제목
Development of Thermophysical Property Models for Aqueous Amino Acid Solutions
저자
Kim, Jun-WooLee, Kang HoonPark, Woo HyungHong, Seok BinPark, ChanhunKim, MiaeKim, Jin-Kuk
DOI
10.1002/ceat.202200361
발행일
2023-04
유형
Article; Early Access
저널명
Chemical Engineering and Technology
46
4
페이지
702 ~ 710