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Power to the PeopleHydrogen, fuel cells, batteries and
their translation
John T. S. Irvine
University of St Andrews
Michelin, Dundee 20th February 2020
Focus and Opportunity
• Incumbent Economics dominated by centralised and fossil Energy• CCS, nuclear ??
• Re-engineer to decentralised • Refocus to transport, heat, chemicals• Waste to energy
• Renewables Potential• Intermittency and Availability• Enabled by Storage• Export
• Save CO2 sooner
Power to the People
Address global warming
• Reduce
– Efficiency
– Renewables
– Change
• Remove
– Sequestration
– Utilisation – Chemicals
– Sustainable forestry
– Increasing Carbon in Soils
https://www.sare.org/Learning-Center/Books/Building-Soils-for-Better-Crops-3rd-Edition/Text-Version/Organic-Matter-What-It-Is-and-Why-It-s-So-Important/Organic-Matter-and-Natural-Cycles
The real challenges and rewards are in how we put things together
We need storage
St Andrews
3.4GW 2,852km2
CO2
GENEration Storage Innovation and Sustainability
GENESIS Facility on Eden
John T. S. Irvine
University of St Andrews
Eden Innovation Park
Energy Devolution• Batteries
– Vehicles
– Stationary
– Speciality
• Supercapacitors
• Flow Cells
• Hydrogen
• Synthetic Fuels and Feedstocks from Electrolysis
• Bioenergy
• Fuel Cells
• Economics and Policy
GENEration Storage Innovation and Sustainability
GENESIS Facility on Eden
• Gerry Agnew, Rolls Royce Professor in Energy Engineering
• Faraday Institute £12M Na ion battery project
• Battery scale up facility
• Aligning with Michelin project
– Different TRLs but synergies…
• Hydrogen Accelerator
Innovation Bridge
Enabling Research Eden Centre
St Andrews/ETP
Hydrogen ferry, Hyseas Project
Martin Smith, build at Fergusons
Hyundai NEXO, FCV370 mi range
Refueling: 5 minutes
Tesla Model X, BEV295 mi range
Recharging: 240V 6-30 hours, 480V 40+ minutes
Battery Electric Vehicle
Fuel Cell Vehicle
Nissan Leaf
FI Phase-2 Projects:Next-Generation Na-ion Batteries (NEXGENNA)Lead: J. Irvine (St Andrews)Rob Armstrong (St Andrews), Nuria Tapia-Ruiz (Lancaster)
November 2019
NEXGENNA- NEXT GENERATION OF NA-ION BATTERIESINTRODUCTION- KEY AIMS AND IMPORTANCE
16
• NEXGENNA aims to deliver high-performance, cost-competitive, safe and long cycle Na-ion batteries to enable UK-based industry sector to grow world-leaders of this technology.
• Multidisciplinary approach with early and senior academics at the forefront of their respective fields and chief industrial players.
NEXGENNA- NEXT GENERATION OF NA-ION BATTERIESINTRODUCTION- KEY AIMS AND IMPORTANCE
17
• Why Na-ion?•As application possibilities mushroom,
- Na ion can meet the new demand
- Low cost e.g. large scale storage
- home energy storage,
- 2/3 wheelers in Developing World
NEXGENNA- NEXT GENERATION OF NA-ION BATTERIESINTRODUCTION- KEY AIMS AND IMPORTANCE
18
• Why Na-ion?•As application possibilities mushroom,
- Na ion can meet the new demand
- Low cost e.g. large scale, energy storage, 2/3 wheelers in Developing World
• Sodium availability
• Avoids cobalt
• Safe transport
• Potential for UK Manufacture
Irvine (PI), Armstrong (WPL, PL), Morris
ChhowallaGreyWright(WPL)
NEXGENNA- NEXT GENERATION OF NA-ION BATTERIESINTRODUCTION- WHO ARE WE?
19
Tapia-Ruiz (WPL, PL)GriffinKolosovMertens
Academic partners
Industry partners
External partners
BostonCorrCussenReeves-McLaren
David, Owen JonesWood
ScanlonPalgrave
Carbon Dioxide electrolysis to syngas: enabling through electrochemical switching at nanoscale via oxide or protonic conduction to macroscale concept.
Solid State Electrochemistry GroupOur work ranges from basic solid state science through materials science to engineering.
We seek to translate new ideas to new technology, we need to do some engineering.
Around 50% of our students/PDRAS have engineering degrees
• Pitlochry 2018
• SFC
• EPSRC
• EU Scotas
• Royal Society
• NSF Materials World
Acknowledgements