Research Article

Thermodynamic and Environmental Analysis of Hydrocarbon Refrigerants as Alternatives to R134a in Domestic Refrigerator

Volume: 27 Number: 2 June 1, 2024
EN

Thermodynamic and Environmental Analysis of Hydrocarbon Refrigerants as Alternatives to R134a in Domestic Refrigerator

Abstract

The process of phasing out of medium and high global warming potential refrigerants is accelerating in all areas of refrigeration, particularly since the European F-Gas Regulation No. 517/2014 and the ensuing Kigali amendment went into effect. Hydrocarbon refrigerants are being considered as suitable alternatives due to their low global warming potential and excellent thermal properties, but due to their flammability, safety precautions must be followed. This theoretical study contributes to the evaluation of the thermal and environmental impact of hydrocarbon refrigerants as drop-in alternatives to R134a in domestic refrigerator. In order to conduct an analysis of energy, exergy, and environmental factors, R134a and all hydrocarbons refrigerants proposed by ASHRAE—R290, R600, R600a, R601, R601a, and R1270—were examined as operating fluids used in a domestic refrigerator with a cooling capacity of 157 W and constant condenser temperature of 40°C and variable evaporator temperature every 5°C between -5 and -30°C. The results revealed that all the alternative refrigerants except R601 and R601a have higher thermal and environmental performance than R134a and can be used after refrigerator compressor replacement.

Keywords

References

  1. J. Gill and J. Singh, “Energy analysis of vapor compression refrigeration system using mixture of R134a and LPG as refrigerant,” Int. J. Refrig., vol. 84, pp. 287–299, 2017. doi: 10.1016/j.ijrefrig.2017.08.001
  2. K. Protocol, “Kyoto protocol", UNFCCC Website.” 1997. Available online: http://unfccc.int/kyoto_protocol/items/2830
  3. I. M. G. Almeida, C. R. F. Barbosa, and F. de A. O. Fontes, “Thermodynamic and thermophysical assessment of hydrocarbons application in househould refrigerator,” Rev. Eng. Térmica, vol. 9, no. 1–2, pp. 19–27, 2010. doi: 10.5380/reterm.v9i1-2.61926
  4. G. Venkatarathnam and S. Srinivasa Murthy, “Refrigerants for vapour compression refrigeration systems,” Resonance, vol. 17, pp. 139–162, 2012. doi: 10.1007/s12045-012-0015-x
  5. K. Harby, “Hydrocarbons and their mixtures as alternatives to environmental unfriendly halogenated refrigerants: An updated overview,” Renew. Sustain. Energy Rev., vol. 73, pp. 1247–1264, 2017. doi: 10.1016/j.rser.2017.02.039
  6. R. Zhai, Z. Yang, Y. Zhang, Z. Lv, and B. Feng, “Effect of temperature and humidity on the flammability limits of hydrocarbons,” Fuel, vol. 270, p. 117442, 2020. doi: 10.1016/j.fuel.2020.117442
  7. M. Mohanraj, S. Jayaraj, C. Muraleedharan, and P. Chandrasekar, “Experimental investigation of R290/R600a mixture as an alternative to R134a in a domestic refrigerator,” Int. J. Therm. Sci., vol. 48, no. 5, pp. 1036–1042, 2009. doi: 10.1016/j.ijthermalsci.2008.08.001
  8. W. S. Mohammad and A. O. Jassim, “Experimental and Theoretical Investigation of Propane/Butane and Propane/Isobutane Mixtures as an Alternative to R134a in a Domestic Refrigerator,” Eng. Technol. J., vol. 32, no. 5 Part (A) Engineering, 2014.

Details

Primary Language

English

Subjects

Energy Systems Engineering (Other), Materials Engineering (Other)

Journal Section

Research Article

Early Pub Date

February 19, 2024

Publication Date

June 1, 2024

Submission Date

September 30, 2023

Acceptance Date

February 2, 2024

Published in Issue

Year 2024 Volume: 27 Number: 2

APA
Ali Kadhim, S. (2024). Thermodynamic and Environmental Analysis of Hydrocarbon Refrigerants as Alternatives to R134a in Domestic Refrigerator. International Journal of Thermodynamics, 27(2), 10-18. https://doi.org/10.5541/ijot.1368985
AMA
1.Ali Kadhim S. Thermodynamic and Environmental Analysis of Hydrocarbon Refrigerants as Alternatives to R134a in Domestic Refrigerator. International Journal of Thermodynamics. 2024;27(2):10-18. doi:10.5541/ijot.1368985
Chicago
Ali Kadhim, Saif. 2024. “Thermodynamic and Environmental Analysis of Hydrocarbon Refrigerants As Alternatives to R134a in Domestic Refrigerator”. International Journal of Thermodynamics 27 (2): 10-18. https://doi.org/10.5541/ijot.1368985.
EndNote
Ali Kadhim S (June 1, 2024) Thermodynamic and Environmental Analysis of Hydrocarbon Refrigerants as Alternatives to R134a in Domestic Refrigerator. International Journal of Thermodynamics 27 2 10–18.
IEEE
[1]S. Ali Kadhim, “Thermodynamic and Environmental Analysis of Hydrocarbon Refrigerants as Alternatives to R134a in Domestic Refrigerator”, International Journal of Thermodynamics, vol. 27, no. 2, pp. 10–18, June 2024, doi: 10.5541/ijot.1368985.
ISNAD
Ali Kadhim, Saif. “Thermodynamic and Environmental Analysis of Hydrocarbon Refrigerants As Alternatives to R134a in Domestic Refrigerator”. International Journal of Thermodynamics 27/2 (June 1, 2024): 10-18. https://doi.org/10.5541/ijot.1368985.
JAMA
1.Ali Kadhim S. Thermodynamic and Environmental Analysis of Hydrocarbon Refrigerants as Alternatives to R134a in Domestic Refrigerator. International Journal of Thermodynamics. 2024;27:10–18.
MLA
Ali Kadhim, Saif. “Thermodynamic and Environmental Analysis of Hydrocarbon Refrigerants As Alternatives to R134a in Domestic Refrigerator”. International Journal of Thermodynamics, vol. 27, no. 2, June 2024, pp. 10-18, doi:10.5541/ijot.1368985.
Vancouver
1.Saif Ali Kadhim. Thermodynamic and Environmental Analysis of Hydrocarbon Refrigerants as Alternatives to R134a in Domestic Refrigerator. International Journal of Thermodynamics. 2024 Jun. 1;27(2):10-8. doi:10.5541/ijot.1368985

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