Absorption heat pump
Heat pumps transfer heat from a lower temperature source to one of a higher temperature. This is the opposite of the natural flow of heat and is the same process that is used to extract heat from a fridge.
Heat pumps can be used domestically or commercially to provide hot water, space heating, or other applications such as heating swimming pools.
Generally heat pumps work using compression, and are powered by electricity. A refrigerant fluid is run through the lower temperature source. The fluid ‘absorbs’ heat and boils, even at temperatures below 0° C. The resulting gas is then compressed, which increases its temperature further. The gas is passed into heat exchanger coils, where it condenses, releasing its latent heat. The process then repeats.
Absorption heat pumps work on a similar basis, with a refrigerant that boils at low temperature and pressure, however, in this case, the refrigerant gas (generally ammonia) is then absorbed in a solution (the ‘absorber’, generally water) which is then heated in the ‘generator’ so that the refrigerant evaporates again, but this time at a higher pressure and temperature. It is then condensed through a heat exchanger, heating ‘cool’ return water from the building, and the process then begins again.
The heat source is generally gas-fuelled and so they can also be referred to as a gas absorption heat pump (GAHP). This process is more efficient than a traditional gas-powered boiler.
Other heat sources can be used, such as combined heat and power plant (CHP), solar heated water, (although this requires specialist flat plate collectors that raise the temperature of the water above that normally required), geothermal heat, district heat networks and so on.
Absorption heat pumps are most efficient when supplying low-temperature hot water, such as for underfloor heating. They may be used in combination with conventional boilers to produce higher-temperature water.
Unlike some refrigerants used in compression heat pumps, ammonia is not an ozone depleting gas or a global warming gas. However it is flammable and toxic, and so units are generally hermetically sealed rather than engineered systems and are located outside.
Absorption chillers and absorption refrigerators work on the same principal as absorption heat pumps, but with the flow of heat reversed, so that heat is absorbed from the interior and rejected to the exterior.
[edit] Related articles on Designing Buildings
- Absorption refrigeration.
- Air handling unit.
- Air source heat pumps.
- BSRIA domestic hot water heat pumps testing.
- Coefficient of Performance CoP.
- Dynamic thermal modelling of closed loop geothermal heat pump systems.
- Earth-to-air heat exchangers.
- Exhaust air heat pump.
- Gas absorption heat pump.
- Geothermal pile foundations.
- Ground energy options.
- Ground source heat pumps.
- Heat pump.
- Renewable energy sources: how they work and what they deliver: Part 3: Electrically driven heat pumps DG 532 3.
- Room-based heat pumps.
- Solar-assisted heat pump.
- Solar thermal heating.
- Water source heat pumps.
Featured articles and news
Electrical contractors welcome crackdown on late payment and push for clean energy.
Cyber Security in the Built Environment
Protecting projects, data, and digital assets: A CIOB Academy TIS.
Managing competence in the built environment
ITFG publishes new industry guide on how to meet the ICC principles.
The UK's campaign to reduce noise pollution: Mythbusting, articles and topic guides.
Setting Expectations on Competence Management
Industry Competence Committee.
New Scottish and Welsh governments
CIOB stresses importance of construction after new parliament elections.
The sad story of Derby Hippodrome
An historic building left to decay.
ECA, JIB and JTL back Fabian Society call to invest in skills for a stronger built environment workforce.
Women's Contributions to the Built Environment.
Calls for the delayed Circular Economy Strategy
Over 50 leading businesses, trade associations and professional bodies, including CIAT, and UKGBC sign open letter.
The future workforce: culture change and skill
Under the spotlight at UK Construction Week London.
A landmark moment for postmodern heritage.
A safe energy transition – ECA launches a new Charter
Practical policy actions to speed up low carbon adoption while maintaining installation safety and competency.
Frank Duffy: Researcher and Practitioner
Reflections on achievements and relevance to the wider research and practice communities.
The 2026 Compliance Landscape: Fire doors
Why 'Business as Usual' is a Liability.
Cutting construction carbon footprint by caring for soil
Is construction neglecting one of the planet’s most powerful carbon stores and one of our greatest natural climate allies.





















