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refrigerant
Sign in to saveRefrigerants are working fluids that carry heat from a cold environment to a warm environment while circulating between them. For example, the refrigerant in an air conditioner carries heat from a cool indoor environment to a hotter outdoor environment. Similarly, the refrigerant in a kitchen refrigerator carries heat from the inside the refrigerator out to the surrounding room. A wide range of fluids are used as refrigerants, with the specific choice depending on the temperature range needed and constraints related to the system involved.
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- Refrigerants
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22 sectionsContents
- Requirements and desirable properties
- Thermophysical property requirements
- Other requirements
- History
- The development of halogenated refrigerants (CFCs and HCFCs)
- Phase-out of CFCs and HCFCs (ozone-layer protection)
- Renewed interest in natural refrigerants
- Phase-down of HFCs (climate-change mitigation)
- Refrigerant safety, environmental management, and reclamation
- Comparative performance of refrigerants
- Characteristics of some common refrigerants
- Refrigerants with very low climate impact
- Widely used, HFC refrigerants
- Banned or phasing-out CFCs, HCFCs, and HFCs
- Other refrigerants
- Numbered classification of refrigerants
- Main numbering system
- Series outside the main system
- Composition-designating prefixes
- See also
- References
- External links
Refrigerants are working fluids that carry heat from a cold environment to a warm environment while circulating between them. For example, the refrigerant in an air conditioner carries heat from a cool indoor environment to a hotter outdoor environment. Similarly, the refrigerant in a kitchen refrigerator carries heat from the inside the refrigerator out to the surrounding room. A wide range of fluids are used as refrigerants, with the specific choice depending on the temperature range needed and constraints related to the system involved.
Refrigerants are the basis of vapor compression refrigeration systems. The refrigerant is circulated in a loop between the cold and warm environments (see figure). In the low-temperature environment, the refrigerant absorbs heat at low pressure, causing it to evaporate. The gaseous refrigerant then enters a compressor, which raises its pressure and temperature. The pressurized refrigerant circulates through the warm environment, where it releases heat and condenses to liquid form. The high-pressure liquid is then depressurized and returned to the cold environment as a liquid-vapor mixture.