Published January 2015 | Version v1
Journal article

Experimental measurements and thermodynamic modeling of refrigerant hydrates dissociation conditions

  • 1. Department of Chemical Engineering, Buinzahra Branch, Islamic Azad University, Buinzahra (Iran, Islamic Republic of)
  • 2. Thermodynamics Research Unit, School of Engineering, University of KwaZulu-Natal, Howard College Campus, King George V, Avenue, Durban 4041 (South Africa)
  • 3. Institut de Recherche en Génie Chimiqueet Pétrolier (IRGCP), Paris Cedex (France)

Description

Highlights: • Dissociation conditions of refrigerant hydrates are studied experimentally and theoretically. • Refrigerants R23, R134a, R125a, R22, R410A, R407C and R507C are studied experimentally. • A thermodynamic model able to predict refrigerant hydrates dissociation conditions is proposed. • The results show good agreement between the experimental and predicted values. - Abstract: This study aims to investigate dissociation conditions of refrigerant hydrates both experimentally and theoretically. For this purpose, dissociation conditions of refrigerants R23, R134a, R125a, R22, R410A, R407C and R507C have been measured experimentally. A thermodynamic model that is able to predict refrigerant hydrates dissociation conditions in the various phase equilibrium regions has been proposed as well. Refrigerants modeled in this study include pure refrigerants: R11, R12, R13, R22, R23, R32, R134a, R141b, R143a, R125a, R152a, and mixed refrigerants: R11 + R12, R11 + R114, R12 + R114, R32 + R125a + R134a (R407C), R32 + R125a (R410A). For the modeling of the fluid and hydrate phases, the Peng-Robinson equation of state modified by Stryjek and Vera and the MHV2 GE-EoS mixing rule along with the UNIFAC (original) activity coefficient and van der Waals–Platteeuw (vdW–P) models were employed. The results show good agreement between the experimental and predicted values

Availability note (English)

Available from http://dx.doi.org/10.1016/j.jct.2014.08.007

Additional details

Identifiers

DOI
10.1016/j.jct.2014.08.007;
PII
S0021-9614(14)00260-2;

Publishing Information

Journal Title
Journal of Chemical Thermodynamics
Journal Volume
80
Journal Page Range
p. 30-40
ISSN
0021-9614
CODEN
JCTDAF

Optional Information

Copyright
Copyright (c) 2014 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.