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Queen Mary University of London: Queen Mary Research Online (QMRO)
Article . 2020
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High-performance fuel cell designed for coking-resistance and efficient conversion of waste methane to electrical energy
UKRI| Multi-scale ANalysis for Facilities for Energy STorage (Manifest) ,
UKRI| Electrodes by Design - Microstructural Engineering of High Performance Electrodes for Solid Oxide Fuel Cells ,
UKRI| From membrane material synthesis to fabrication and function (SynFabFun) ,
UKRI| System Builders - Device Assembly from Nanoporous Materials Developed from Current Platform Grant (EP/J014974/1)
Authors: Mengzheng Ouyang; Bo Wang; Nigel P. Brandon; Mohamad F. Rabuni; Mohamad F. Rabuni; Dan J. L. Brett; Xuekun Lu; +5 Authors
Mengzheng Ouyang; Bo Wang; Nigel P. Brandon; Mohamad F. Rabuni; Mohamad F. Rabuni; Dan J. L. Brett; Xuekun Lu; Kang Li; Nicholas M. Farandos; Tao Li; Geoff Kelsall; Paul R. Shearing;
doi: 10.1039/d0ee00070a
Abstract
A novel micro-monolithic fuel cell converts low-grade methane efficiently to clean electrical energy.
Country
United Kingdom
Related Organizations
- University College of London United Kingdom
- Queen Mary University of London United Kingdom
- Universiti Malaysia Terengganu Malaysia
- Imperial College London United Kingdom
- University College London United Kingdom
Keywords
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Funded by
UKRI| Multi-scale ANalysis for Facilities for Energy STorage (Manifest), UKRI| Electrodes by Design - Microstructural Engineering of High Performance Electrodes for Solid Oxide Fuel Cells, UKRI| From membrane material synthesis to fabrication and function (SynFabFun), UKRI| System Builders - Device Assembly from Nanoporous Materials Developed from Current Platform Grant (EP/J014974/1)
Related to Research communities
Energy Research