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Chemical Processes and Use of CO2

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Chemical Processes and Use of CO2 ( chemical-processes-and-use-co2 )

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SIT FUNDED PROJECTS 3.15 SIT – Utilization of low-calorific industrial heat by means of sorption heat pump systems using ionic liquids and thermochemical accumulators BMBF Project FKZ 033RC1002 Project Coordination: Dr. Jens Busse, Evonik Industries AG Project Partner: Friedrich-Alexander-Universität Erlangen-Nürnberg, Deutsches Zentrum für Luft- und Raumfahrt e.V. (DLR), GasKlima GmbH 3.15.1 Project goals and content Large quantities of heat are constantly being released by German industry into the surroundings without being used, either because the temperature of the waste heat stream is too low or there is no use for the heat at the time it is available. Over the last few decades, heat integration technology has been introduced at integrated production sites, particularly those in the chemical industry, with the result that the energy efficiency of production processes has been increased to the point where further improvement will only be possible with the introduction of innovative technology. Additional heat flows can only be utilised if the temperature can be increa- sed to a useable level with the aid of a heat pump. High-density chemical he- at storage media can be used to store the higher-temperature heat and make it available on demand in the form of thermal energy, significantly reducing primary energy consumption and greenhouse gas emissions. Source Novel pairs of working fluids based on ionic liquids are currently being de- veloped for use with absorption heat pumps. Tailoring suitable ternary wor- king fluid pairings can boost overall performance and can create advantages compared to the conventional working fluid pairings that have been used Fig. 109: Scenario for utilising low-calorie industrial waste heat Heat pump Heat accumulator Load 275

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