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Innovative High Temperature Heat Pump for Flexible Industrial Systems

Project description

High temperature heat pump towards industrial systems decarbonisation

It is necessary to replace industrial systems that produce significant pollution and to transition industrial ecosystems toward greater sustainability. However, existing solutions often lack efficiency, adaptability, scalability, and ease of integration. With this in mind, the EU-funded I-UPS project aims to address these issues by developing and validating a groundbreaking, cost-effective, and reliable high-temperature heat pump (HTHP) integrated into a flexible energy system for medium-temperature industrial applications. This HTHP is designed to offer an efficient path to decarbonisation, utilising sustainable technologies and providing unmatched efficiency and seamless integration compared to current alternatives.

Objective

I-UPS aims to develop and validate a first-of-a-kind (FOAK), cost-effective and reliable high-temperature industrial heat pump fully integrated in a flexible energy system for industrial medium temperature (~400°C) heat decarbonisation. I-UPS validate up to TRL 5 a first-of-a-kind high-temperature heat pump (HTHP), based on Stirling cycles and exploiting a non-toxic, inert, zero ozone depletion potential (ODP) and zero global warming potential (GWP) fluid, able to deliver decarbonized heat up to 400°C. No other commercial alternatives are available achieving this heat delivery temperature at efficiencies higher than 100%. The developed heat pump provides enhanced performance thanks to the optimization of key subcomponents, such as optimized static and dynamic sealing solutions and compact heat exchangers enabled by genetic algorithm based design optimization and additive manufacturing techniques. I-UPS provides also a seamless integration of the developed high temperature heat pump in flexible energy systems including molten salts based thermal energy storage (TES) for on-demand decarbonized industrial heat based on RES electricity. This effective integration will be attained thanks to the design and development of purposely-optimized compact heat exchangers (pressurized gas to molten salts) which will ensure reliable high temperature operation and fast ‘plug-and-play’ installation. The integrated heat pump configuration proposed by I-UPS will enable higher modularity, flexibility, and efficiency for heating decarbonisation also leveraging waste heat recovery and contributing to the circularity of the industrial sector. I-UPS will contribute to heating flexible electrification, permitting a broader penetration of RES and facilitating and maximizing the market penetration of heat pumps in industrial contexts.

Keywords

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Programme(s)

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Topic(s)

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Funding Scheme

Funding scheme (or “Type of Action”) inside a programme with common features. It specifies: the scope of what is funded; the reimbursement rate; specific evaluation criteria to qualify for funding; and the use of simplified forms of costs like lump sums.

HORIZON-RIA - HORIZON Research and Innovation Actions

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Call for proposal

Procedure for inviting applicants to submit project proposals, with the aim of receiving EU funding.

(opens in new window) HORIZON-CL5-2023-D3-02

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Coordinator

KUNGLIGA TEKNISKA HOEGSKOLAN
Net EU contribution

Net EU financial contribution. The sum of money that the participant receives, deducted by the EU contribution to its linked third party. It considers the distribution of the EU financial contribution between direct beneficiaries of the project and other types of participants, like third-party participants.

€ 411 072,50
Address
BRINELLVAGEN 8
100 44 Stockholm
Sweden

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Region
Östra Sverige Stockholm Stockholms län
Activity type
Higher or Secondary Education Establishments
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Total cost

The total costs incurred by this organisation to participate in the project, including direct and indirect costs. This amount is a subset of the overall project budget.

€ 411 072,50

Participants (4)

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