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Global Hydrogen Production Technologies (HyPT) Center

Reference Number
EP/Y026098/1
Title
Global Hydrogen Production Technologies (HyPT) Center
Status
Started
Energy Categories
Hydrogen and Fuel Cells(Hydrogen, Hydrogen production)
Other Cross-Cutting Technologies or Research(Environmental, social and economic impacts)
Research Types
Basic and strategic applied research
Science and Technology Fields
SOCIAL SCIENCES (Economics and Econometrics)
SOCIAL SCIENCES (Politics and International Studies)
PHYSICAL SCIENCES AND MATHEMATICS (Chemistry)
PHYSICAL SCIENCES AND MATHEMATICS (Metallurgy and Materials)
ENGINEERING AND TECHNOLOGY (Chemical Engineering)
ENGINEERING AND TECHNOLOGY (Mechanical, Aeronautical and Manufacturing Engineering)
UKERC Cross Cutting Characterisation
Not Cross-cutting
Sociological economical and environmental impact of energy
Principal Investigator
Dr N Ozkan
Environment Group
Policy Studies Institute
Award Type
Standard
Funding Source
EPSRC
Start Date
15 December 2023
End Date
14 December 2028
Duration
60 months
Total Grant Value
£5,290,150
Industrial Sectors
Energy
Region
London
Programme
UKRI Strategic Theme Building a Green Future
Investigators
Principal Investigator
Dr N Ozkan, Environment Group, Policy Studies Institute
Other Investigator
Dr A Boies, Engineering, University of Cambridge
Professor J Durrant, Chemistry, Imperial College London
Dr D Huo, School of Water, Energy and Environmen, Cranfield University
Dr B Jordao Moreira Sarruf, Chemical Engineering, University of Birmingham
Dr AJ Majewski, Chemical Engineering, University of Birmingham
Dr M Mamlouk, Sch of Engineering, Newcastle University
Professor R Steinberger-Wilckens, Chemical Engineering, University of Birmingham
Professor N Voulvoulis, Centre for Environmental Policy, Imperial College London
Web Site
Objectives
Abstract
The Global Hydrogen Production Technologies (HyPT) Center will establish a complementary and comprehensive team with 34 leading scholars from 19 institutions in 6 countries (US, Australia, Canada, UK, Egypt and Germany) to formulate the pathway to large-scale net-zero hydrogen production from a bespoke platform of complementary technologies as an enabler of global decarbonization and with costs competitive to current methods of hydrogen production. The Center will propel three major hydrogen production technologies with strong potential to deliver breakthroughs: (i) water electrolysis including renewable energy integration and emerging electrolyzers; (ii) methane pyrolysis with solid carbon as value-added co-products; and (iii) photocatalytic solar water splitting. The Center will also tackle two major cross-cutting challenges for hydrogen: (i) the socio-economic dimensions to build a hydrogen economy spanning economics, policies and market; and (ii) the water resource/treatment dimensions for electrolysis and photocatalysis. Each funding partner country will lead one thrust area, while researchers from all the countries will be interwoven under the thrust areas to work synergistically with a common goal to accelerate technology development and deployment across the globe. The centre is led Arizona State University in the US with the participation of Cranfield, Birmingham, Cambridge, Imperial College London and Newcastle Universities from the UK
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Added to Database
04/10/23