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Heat Pumps Technology Guide

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Heat Pumps Technology Guide ( heat-pumps-technology-guide )

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Heat Pumps Technology Guide SEAI 2.2.3. Absorption heat pumps Instead of an electric compressor, absorption heat pumps use heat to drive the heat pump. Absorption heat pumps use two chemicals that can dissolve in one another, often ammonia and water. Heat is supplied to a vessel containing a solution of the ammonia and water at high pressure, as seen in Figure 4: 1. The heat causes the ammonia to vaporise, separating it from the water (1). 2. The high-temperature ammonia vapour passes through the condenser where it supplies heat to the heat distribution system. This loss of heat causes it to condense (4). 3. The high-temperature liquid ammonia is then reduced in pressure by passing it though a throttle valve (5). 4. The low-pressure, low-temperature liquid ammonia passes through an evaporator (6) that uses ambient heat from the heat to evaporate the low-pressure ammonia. 5. Meanwhile, the high-pressure water left after the ammonia has evaporated is reduced in pressure by a throttle valve (2), where it is combined with the low-pressure ammonia vapour in the absorber (3). 6. The solution is then pumped to high pressure again by an electrically driven pump (7), and the cycle starts again. The energy required to pump the liquid is small compared with the heat supplied to the generator, so this process is considered to be thermal compression rather than mechanical compression. Figure 4: Gas-absorption heat pump cycle Absorption heat pumps are often used as part of a ‘trigeneration’ system, where the heat generated by a combined heat and power (CHP) plant is used to vaporise the ammonia. In a trigeneration system, the absorption heat pump is used to generate chilled water or refrigeration systems. Absorption heat pumps can also use renewable heat sourced from the air, ground, water, or waste heat. 5

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