Project: Upgraded High Temperature Heat in Energy Intensive Sectors
2021-03-01 – 2022-08-31
- Abstract
The Upheat-INES project wants to develop a very high temperature heat pump (VHT-HP) technology to upgrade low-grade waste heat (50°C-100°C) to mid-grade waste heat (150°-200°) that can be valorized and used within (petro)chemical processes or in other downstream energy intensive clusters. In a realistic scenario, the valorisation trajectory is of relevance for 2623 GWh of heat demand, with chemistry, refineries and food being responsible for 41% of this potential. The project teams envisages a baseline reduction potential of 264 940 ton CO2eq annually, equivalent to an annual omitted CO2 cost of 6.09 mio € (EU-ETS).
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- Journal Article
- A1
- open access
High-temperature heat pumps in industrial heating networks : a study on energy use, emissions, and economics
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Analysis of heat pump-integrated heating network topologies for decarbonization in industrial clusters
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Design of a high-temperature heat pump providing heat up to 200 °C
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Impact of composition adjustment on the performance of a water-ammonia high-temperature heat pump
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- open access
Booster heat pump with drop-in zeotropic mixtures applied in ultra-low temperature district heating system
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- Journal Article
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Selection of pure and binary working fluids for high-temperature heat pumps : a financial approach
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Theoretical assessment of industrial heating technologies up to 250°C
(2023) 26TH IIR INTERNATIONAL CONGRESS OF REFRIGERATION, VOL 4. In Science et Technique du Froid 26. p.888-899 -
- Journal Article
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- open access
The potential of vapor compression heat pumps supplying process heat between 100 and 200 °C in the chemical industry
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- Journal Article
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- open access
The thermodynamic potential of high-temperature transcritical heat pump cycles for industrial processes with large temperature glides
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- Journal Article
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- open access
A predictive method for pipe in pipe, cylindrical modules and spherical packed bed latent thermal energy storage systems