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energy steadily flowing into the atmosphere. This energy flow is beginning to gain consideration in global climate change models and is estimated to become an equal player along with CO2 production, in the climate within the next two hundred years. The recovery and reuse of waste heat requires many different types of equipment to achieve all possible requirements. The most important type of equipment in waste heat recovery is a heat exchanger which allows for the heat energy in the exhaust gas to be transferred to a more useable form. The shell-and-tube heat exchanger is the most commonly used type of heat exchanger for this application. However to recover additional energy from the stack gas by condensing the water vapor, a transport membrane condenser has been developed. This technology, along with a conventional shell-and-tube condensing economizer, is capable of recovering the latent heat stored by converting liquid water into a vapor form during the combustion process. This process allows for almost an additional 10% of energy to be recovered. Other types of important equipment used in heat recovery applications include heat pumps, absorption chillers, heat engines and electrical conversion equipment, and pumps. Heat pumps can be used to increase the temperature of the fluid when the recovered energy temperature cannot be used in the facility. This provides additional end use possibilities by being able to increase the fluid temperature to meet certain equipment requirements. The absorption chiller can be used for the same application as the heat pump but can also be used to supply a cooling effect to the facility, whether it is space conditioning or refrigeration. Heat engines and electrical conversion equipment have the unique effect of allowing the user to create electricity from the waste heat when applications cannot be found for the heat energy directly. This allows an almost infinite number of possible applications for the energy, however these technologies have relatively low conversion efficiency and a large implementation cost leading to a tough payback 121PDF Image | TUDY OF LOW-GRADE WASTE HEAT RECOVERY
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