Autumn School Flow Battery - Leitat...15/11/2018 Autumn School Flow Battery 11 State of the Art...

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Autumn School Flow Battery

Barcelona – 12th-13th of November 2018

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EnergyKeeper

LEITAT

MSc. Flavia Palombarini | apalombarini@leitat.org

This project has received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 731239. This publication reflects only the author’s views and the European Union is not liable for any use that may be made of the information contained therein.

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Introduction

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Stages of a projectEUROPEAN CALL

Differences between H2020 and FP7

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Stages of a project

Differences between H2020 and FP7

BRAINSTORM

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Stages of a project

Differences between H2020 and FP7

STATE OF THE ART

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Stages of a project

IDEA

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Stages of a project

Power point, Gantt, … • Attractive and “secure”• Clear (role of each partner)

PAPERWORK

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Stages of a project

• Every proposed task• Budget• Person months• Timming• ….

CONSORTIUM

PROPOSAL

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Stages of a project

FIRST/SECOND DRAFTGRANT

AGREEMENT

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State of the Art

Electrode

Catholyte tank

Anolyte tank

Membrane

A+A+

B-

Active Material

Advantages

Electrolytes auto-regenerated

Full depth charge/discharge

Long cycle life > 15 years estimation

Continuous energy supply

*Janoschka, T.; Martin, N.; Martin, U.; Friebe, C.; Morgenstern, S.; Hiller, H.; Hager, M. D.; Schubert, U. S. An aqueous, polymer-based redox-flow

battery using non-corrosive, safe, and low-cost materials. Nature 2015, 527, 78−81.

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Keep the energy at the right place!

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EnergyKeeper

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EnergyKeeper’s consortium

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EnergyKeeper’s consortium

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EnergyKeeper’s consortium

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EnergyKeeper’s consortium

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EnergyKeeper’s consortium

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H2020-LCE-2016-SGS Grant agreement n° 731239. EU contribution: 3,995,255 €Duration : 01/2017 – 12/2019Coordinator: Lithuanian Energy institutewww.energykeeper.eu

The overall aim of the EnergyKeeper project is to design, develop and test a novel, scalable, sustainable and costcompetitive flow battery based on organic redox active materials. A 100kW redox flow battery with a capacity of350 kWh will be constructed and equipped with an interoperable Battery Management System enabling plug andplay integration into a Smart Grid.

Keep the energy at the right place!

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Conclusions

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Conclusions

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Conclusions

New water based electrolyte

New real-time control system

Self-sustainable University

A new way of working

Autumn School Flow Battery

Barcelona – 12th-13th of November 2018