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Brett Parkinson
Brett Parkinson
CZero Energy
Verified email at czero.energy
Title
Cited by
Cited by
Year
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
4152019
Hydrogen production using methane: Techno-economics of decarbonizing fuels and chemicals
B Parkinson, M Tabatabaei, DC Upham, B Ballinger, C Greig, S Smart, ...
International Journal of Hydrogen Energy 43 (5), 2540-2555, 2018
2392018
Uncovering the true cost of hydrogen production routes using life cycle monetisation
A Al-Qahtani, B Parkinson, K Hellgardt, N Shah, G Guillen-Gosalbez
Applied Energy 281, 115958, 2021
2282021
The vulnerability of electric vehicle deployment to critical mineral supply
B Ballinger, M Stringer, DR Schmeda-Lopez, B Kefford, B Parkinson, ...
Applied Energy 255, 113844, 2019
1402019
Techno‐economic analysis of methane pyrolysis in molten metals: decarbonizing natural gas
B Parkinson, JW Matthews, TB McConnaughy, DC Upham, ...
Chemical Engineering & Technology 40 (6), 1022-1030, 2017
1082017
Methane pyrolysis in monovalent alkali halide salts: Kinetics and pyrolytic carbon properties
B Parkinson, CF Patzschke, D Nikolis, S Raman, DC Dankworth, ...
International Journal of Hydrogen Energy 46 (9), 6225-6238, 2021
602021
The vulnerability of electric-vehicle and wind-turbine supply chains to the supply of rare-earth elements in a 2-degree scenario
B Ballinger, D Schmeda-Lopez, B Kefford, B Parkinson, M Stringer, ...
Sustainable Production and consumption 22, 68-76, 2020
502020
Co-Mn catalysts for H2 production via methane pyrolysis in molten salts
CF Patzschke, B Parkinson, JJ Willis, P Nandi, AM Love, S Raman, ...
Chemical Engineering Journal 414, 128730, 2021
492021
Molten salt bubble columns for low-carbon hydrogen from CH4 pyrolysis: mass transfer and carbon formation mechanisms
B Parkinson, CF Patzschke, D Nikolis, S Raman, K Hellgardt
Chemical Engineering Journal 417, 127407, 2021
372021
Techno-economic analysis of a process for CO2-free coproduction of iron and hydrocarbon chemical products
B Parkinson, C Greig, E McFarland, S Smart
Chemical Engineering Journal 313, 136-143, 2017
102017
Assured PNT for our future: PTA. Actions necessary to reduce vulnerability and ensure availability
B Parkinson
GPS World 14 (9), 1-10, 2014
102014
Noninvasive differential pressure technique for bubble characterization in high-temperature opaque systems
Z Sun, B Parkinson, OO Agbede, K Hellgardt
Industrial & Engineering Chemistry Research 59 (13), 6236-6246, 2020
92020
Eliminating a numerical accuracy problem in mean life calculations
T Downs, BJ Parkinson
IEEE Transactions on Reliability 27 (4), 286-288, 1978
41978
Correction: Levelized cost of CO 2 mitigation from hydrogen production routes
B Parkinson, P Balcombe, JF Speirs, AD Hawkes, K Hellgardt
Energy & Environmental Science 15 (12), 5425-5433, 2022
22022
Turquoise Hydrogen: Methane Pyrolysis as a Low-CO2 Source of H2
CF Patzschke, B Parkinson, S Raman, DC Dankworth, K Hellgardt
12023
Methane pyrolysis in molten salt environments
BJ Parkinson
Imperial College London, 2020
12020
Carbon separation and removal from molten media
B Parkinson, A Caldwell, S Shaner
US Patent App. 18/041,666, 2023
2023
Moving bed reactor for hydrocarbon pyrolysis
S Shaner, B Parkinson, A Caldwell
US Patent App. 18/040,397, 2023
2023
Metallic based hydrocarbon pyrolysis
S Shaner, A Caldwell, B Parkinson
US Patent App. 18/041,345, 2023
2023
Levelized cost of CO2 mitigation from hydrogen production routes (vol 12, pg 19, 2019)
B Parkinson, P Balcombe, JF Speirs, AD Hawkes, K Hellgardt
ENERGY & ENVIRONMENTAL SCIENCE, 2022
2022
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