Consortium Project Circular Economy for Battery Technologies Key Facts - Key facts
←
→
Page content transcription
If your browser does not render page correctly, please read the page content below
Consortium Project Circular Economy for Battery Technologies Key Facts Key facts Start: Q3 Participation Fee: € 29.000* Cross-industrial End: May 2021 consortium partners *Discount for INC members & SMEs
MOTIVATION Circular Economy – Addressed Industries & Applications Metal mining & refining Circular Economy Battery Cell Metal extraction Scrap Scrap Battery (current & new) Collection & dismantling end-of-life battery packs Applications Automotive Consumer Electronics Grid Energy & Industrial Transportation Exemplary Target Industries Battery systems for electric Smartphones, tablets, Flywheels, pumped hydro, Electrified trucks, airplanes, vehicles, wireless sensors, etc. laptops, evaporator, etc. SMES, supercaps, etc. trains, etc. 2 SMES: Superconducting magnetic energy storage
MOTIVATION Someday every battery must be recycled! – The question is when? Example questions answered in the consortium project What will the future cathode look When is raw material recovery worthwhile 1st Life like? How will anode structure and to what extent? Battery Cell materials evolve? When is reconditioning an option? How can the lifetime be extended? Metal extraction What legal obligations must my company take into account Battery Decomposition due to the new battery law in 2020 (BattG2)? (current & new) Collection & dismantling end-of-life battery packs How to integrate 2nd Life What are alternatives 1st & 2nd life? to Li-ion batteries? Applications Can the battery lifetime be How will Li-ion extended, keyword second life? batteries evolve? 3
TIMELINE & POTENTIAL RESULTS Circular Economy for Battery Technologies Kick-off 1st Report 2nd Report Final Meeting July 2020 October 2020 January 2021 May 2021 Stage 1 Stage 2 Stage 3 3 months 3 months 3 months Segmentation & Scanning Detailed technology assessment Business Case/ Roadmap/ Expert landscape ▪ Structured and pre-evaluated overview of ▪ Systematic selection of attractive applications ▪ Different evaluation opportunities possible state of the are solutions and applications for and specific technology questions by the depending on consortia demands: battery management, alternative battery project partners ▪ Derivation of detailed business cases for STAGE 1 concepts and battery recycling STAGE 2 STAGE 3 ▪ Detailed technology studies for each selected selected applications/components ▪ Assessment of relevant technology trends application and questions e.g. assessment of according to specific consortium needs technological feasibilities or cooperation ▪ Creation of technology roadmaps for e.g. partners battery concepts or battery recycling ▪ Scanning & scouting for cross-industrial best ▪ Preparation of industrial or research technologies practices, solutions and research applications overviews to identify the most important players for the respective application. ▪ Optional: Individual Tech-Cases can be ordered additionally ➢ Basis for the structuring and evaluation of the ➢ Basis for the selection of the cases in Stage 3 ➢ Information basis for partner-specific applications in Stage 2 roadmaps/strategic decisions Optional workshops Optional network/platform Questionnaire Consortium meeting with partners/experts meetings 4
PROCEEDING – EXAMPLE OF PREVIOUS PROJECTS Stage 1: Segmentation & Application Trees Segmentation ▪ Selection of focus areas based on consortium preferences (questionnaire) ▪ Systematic overview on technology segments, structure Stage 1 and overall market readiness within the focus areas ▪ Suggested segmentation: battery materials, battery technologies, battery management system (BMS), second life, battery recycling/ decomposition ▪ A connection between the different segments and its solutions is generated Application trees ▪ Structured overview of current and future solutions in the context of specific applications fields to be presented to the consortium during the 1st report meeting ▪ Pre-evaluation of the most relevant applications (approximately 250 cross-industrial solutions) ➔Basis for the selection of possibilities in Stage 2 5
PROCEEDING – EXAMPLE OF PREVIOUS PROJECTS Stage 2: Detailed Technology Assessment Detailed technology analyses ▪ Technological deep dive to assess different technological concepts based on partner specific applications of interest. ▪ Aggregation of relevant technology- and market-related information ▪ Evaluation of current advantages and disadvantages of the applications chosen by the consortium and their technological feasibility ▪ Identification of potential technology partners 6 providers ▪ Executive Summary for a quick evaluation of each application Stage 2 Cross-industrial workshops ▪ Cross-linking of compatible research and implementation partners from different industries in a facilitated workshop ▪ Derivation of clusters of common problems and derivation of possible common solutions 6
PROCEEDING – EXAMPLE OF PREVIOUS PROJECTS Stage 3: Expert landscape │ Roadmaps │ Business Cases Expert landscape ▪ Identification of relevant research facilities (science, industry) conducting research and development in the field of the selected solutions ▪ Determination & evaluation of potential partners Roadmaps ▪ Identification of relevant research facilities (science, industry) conducting research and development in the field of the selected materials ▪ Definition of development roadmaps for the selected applications/ technologies Business Case analyses Stage 3 ▪ Detailed calculation of business cases for the selected applications/ solutions relevant to the consortium/ partner 7
REFERENCES Former KEX Consortium Partners ... More than 250 previous Consortium Partners* ... ... ... 8 * all mentioned companies are partners of a former consortium project hosted by KEX AG and it´s research partners
YOUR CONTACT PERSON Realizing the Potentials of Robotics & Automation Patrick Neudegger Dr. Léonard Kröll Project Management Deputy Project Manager patrick.neudegger@kex-ag.com Leonard.kroell@kex-ag.com +49 (0) 151 54448 613 +49 241 51038 651 KEX Knowledge Exchange AG Campus-Boulevard 30 52074 Aachen Germany www.kex-ag.com 9
You can also read