On substances that deplete the ozone layer


Options for existing Systems



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10.4 Options for existing Systems

      1. Retrofit of CFC-12 systems


There are 12 blend refrigerants that are approved by the USEPA under the SNAP regulation for retrofit of CFC-12 systems (USEPA, 2013); however, many of these have seen only minimal use and some were never fully commercialized. Retrofit to HFC-134a was approved by the OEMs and was more commonly used if a retrofit was deemed appropriate. In a 2013 MAC survey about 6% of all cars were still operating with CFC-12 and about 10% of all cars had been retrofitted to HFC-134a (Atkinson, 2014). However, retrofitting of CFC-12 vehicles has declined significantly primarily due to the declining fleet of vehicles with CFC-12 MACs and in part due to the continued availability of reclaimed CFC-12. In the USA, the sale of CFC-12 is restricted only to certified technicians.
      1. Hydrocarbon retrofits


Retrofit of HFC-134a and CFC-12 systems to hydrocarbons is still occurring in various regions, particularly in Australia and to some extent in North America even though vehicle OEMs and some regulatory bodies do not approve of this process due to inadequate safety mitigation

10.5 Concluding Remarks


Currently, more than one refrigerant are being used for car and light truck air conditioning: HFC-134a will remain largely adopted worldwide, while HFC-1234yf is currently implemented in some models and likely will be used in more models in the near future. Development of R-744 continues and will also likely be used. Possibly some new low GWP synthetic refrigerant or refrigerant blend (e.g. R-445A) will also be used. In existing systems (designed for CFC-12 or HFC-134a), even hydrocarbons (e.g. HC-290) are used in some regions (e.g. Australia).

At the moment, it cannot be foreseen whether or not all these refrigerants will remain for a long period of time parallel in the market. If the bus and train sector will follow these trends is also unclear.


10.6 References


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ASHRAE 2013 ASHRAE Standard 34-2013. 2013. Designation and Safety Classification of Refrigerants. American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc.

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Koban, 2013 Koban, M. E., and Minor, B., 2013. HFO-1234yf Additional Flammability Testing. SAE, TMSS, Troy, MI, USA, 2013.

Koehler, 2013 Koehler, J., Raabe, G., Schulze, C., and Tegethoff, W. J., 2013. Transient Simulation of Mobile R-445A Air Conditioning Systems – From the Molecules to the System. SAE, TMSS, Troy, MI, USA, 2013.

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Kopecka, 2013a Kopecka, M., Hegar, M., Sulc, V. and Berge, J., 2013a. System Drop-In Tests of Refrigerant Blends N-13a and AC5 in Bus Air-Conditioning Unit Designed for R-134a. Test Report #12, Air-Conditioning, Heating, and Refrigeration Institute (AHRI) Low-GWP Alternative Refrigerants Evaluation Program (Low-GWP AREP), Arlington, VA, USA, April 7, 2013.

Kopecka, 2013b Kopecka M., Hegar, M., Sulc, V. and Berge, J., 2013b. System Drop-In Tests of Refrigerant Blends L-20 and D52Y in Bus Air-Conditioning Unit Designed for R-407C. Test Report #13, Air-Conditioning, Heating, and Refrigeration Institute (AHRI) Low-GWP Alternative Refrigerants Evaluation Program (Low-GWP AREP), Arlington, VA, USA, April 7, 2013.

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