The role of hydrogen and fuel cells in the global energy system I Staffell, D Scamman, AV Abad, P Balcombe, PE Dodds, P Ekins, N Shah, ... Energy & Environmental Science 12 (2), 463-491, 2019 | 3023 | 2019 |
Water electrolysis: from textbook knowledge to the latest scientific strategies and industrial developments M Chatenet, BG Pollet, DR Dekel, F Dionigi, J Deseure, P Millet, ... Chemical Society Reviews 51 (11), 4583-4762, 2022 | 640 | 2022 |
How to decarbonise international shipping: Options for fuels, technologies and policies P Balcombe, J Brierley, C Lewis, L Skatvedt, J Speirs, A Hawkes, I Staffell Energy conversion and management 182, 72-88, 2019 | 560 | 2019 |
Levelized cost of CO 2 mitigation from hydrogen production routes B Parkinson, P Balcombe, JF Speirs, AD Hawkes, K Hellgardt Energy & environmental science 12 (1), 19-40, 2019 | 443 | 2019 |
Motivations and barriers associated with adopting microgeneration energy technologies in the UK P Balcombe, D Rigby, A Azapagic Renewable and Sustainable Energy Reviews 22, 655-666, 2013 | 270 | 2013 |
Investigating the importance of motivations and barriers related to microgeneration uptake in the UK P Balcombe, D Rigby, A Azapagic Applied Energy 130, 403-418, 2014 | 217 | 2014 |
Methane emissions: choosing the right climate metric and time horizon P Balcombe, JF Speirs, NP Brandon, AD Hawkes Environmental Science: Processes & Impacts 20 (10), 1323-1339, 2018 | 195 | 2018 |
Energy self-sufficiency, grid demand variability and consumer costs: Integrating solar PV, Stirling engine CHP and battery storage P Balcombe, D Rigby, A Azapagic Applied Energy 155, 393-408, 2015 | 166 | 2015 |
A greener gas grid: What are the options J Speirs, P Balcombe, E Johnson, J Martin, N Brandon, A Hawkes Energy Policy 118, 291-297, 2018 | 141 | 2018 |
The natural gas supply chain: the importance of methane and carbon dioxide emissions P Balcombe, K Anderson, J Speirs, N Brandon, A Hawkes ACS Sustainable Chemistry & Engineering 5 (1), 3-20, 2017 | 135 | 2017 |
Environmental impacts of microgeneration: Integrating solar PV, Stirling engine CHP and battery storage P Balcombe, D Rigby, A Azapagic Applied Energy 139, 245-259, 2015 | 126 | 2015 |
How can LNG-fuelled ships meet decarbonisation targets? An environmental and economic analysis P Balcombe, I Staffell, IG Kerdan, JF Speirs, NP Brandon, AD Hawkes Energy 227, 120462, 2021 | 107 | 2021 |
Characterising the distribution of methane and carbon dioxide emissions from the natural gas supply chain P Balcombe, NP Brandon, AD Hawkes Journal of Cleaner Production 172, 2019-2032, 2018 | 90 | 2018 |
The carbon credentials of hydrogen gas networks and supply chains P Balcombe, JF Speirs, E Johnson, J Martin, NP Brandon, AD Hawkes Renewable and Sustainable Energy Reviews 91, 1077–1088, 2018 | 64 | 2018 |
Methane and CO2 emissions from the natural gas supply chain: an evidence assessment P Balcombe, K Anderson, J Speirs, N Brandon, A Hawkes Sustainable Gas Institute, Imperial College London, 2015 | 64 | 2015 |
Total Methane and CO2 Emissions from Liquefied Natural Gas Carrier Ships: The First Primary Measurements P Balcombe, DA Heggo, M Harrison Environmental science & technology 56 (13), 9632-9640, 2022 | 51 | 2022 |
Assessing the impact of future greenhouse gas emissions from natural gas production D Crow, P Balcombe, N Brandon, A Hawkes Science of the Total Environment, 2019 | 51 | 2019 |
Indicate separate contributions of long-lived and short-lived greenhouse gases in emission targets MR Allen, GP Peters, KP Shine, C Azar, P Balcombe, O Boucher, M Cain, ... NPJ climate and atmospheric science 5 (1), 5, 2022 | 49 | 2022 |
LNG supply chains: a supplier-specific life-cycle assessment for improved emission accounting SA Roman-White, JA Littlefield, KG Fleury, DT Allen, P Balcombe, ... ACS Sustainable Chemistry & Engineering 9 (32), 10857-10867, 2021 | 45 | 2021 |
Natural gas fuel and greenhouse gas emissions in trucks and ships J Speirs, P Balcombe, P Blomerus, M Stettler, P Achurra-Gonzalez, ... Progress in Energy 2 (1), 012002, 2020 | 37 | 2020 |