1 |
Exergy-based modular design of an on-board MeOH-to-H-2 processor for fuel cell vehicles Wu W, Liew KB, Abbas S, Raza MA, Hwang JJ, Yang SB, Li ZK International Journal of Hydrogen Energy, 45(38), 19880, 2020 |
2 |
Techno-economic evaluation of a hybrid fuel cell vehicle with on-board MeOH-to-H-2 processor Wu W, Chuang BN, Hwang JJ, Lin CK, Yang SB Applied Energy, 238, 401, 2019 |
3 |
Sliding mode observer based nonlinear control of a PEMFC integrated with a methanol reformer Sankar K, Thakre N, Singh SM, Jana AK Energy, 139, 1126, 2017 |
4 |
An onboard hydrogen generator for hydrogen enhanced combustion with internal combustion engine Chen SC, Kao YL, Yeh GT, Rei MH International Journal of Hydrogen Energy, 42(33), 21334, 2017 |
5 |
A low-temperature partial-oxidation-methanol micro reformer with high fuel conversion rate and hydrogen production yield Wang HS, Huang KY, Huang YJ, Su YC, Tseng FG Applied Energy, 138, 21, 2015 |
6 |
Insights on the effective incorporation of a foam-based methanol reformer in a high temperature polymer electrolyte membrane fuel cell Avgouropoulos G, Papavasiliou J, Ioannides T, Neophytides S Journal of Power Sources, 296, 335, 2015 |
7 |
A review of recent advances in numerical simulations of microscale fuel processor for hydrogen production Holladay JD, Wang Y Journal of Power Sources, 282, 602, 2015 |
8 |
Test of hybrid power system for electrical vehicles using a lithium-ion battery pack and a reformed methanol fuel cell range extender Andreasen SJ, Ashworth L, Sahlin S, Jensen HCB, Kaer SK International Journal of Hydrogen Energy, 39(4), 1856, 2014 |
9 |
In situ hydrogen utilization in an internal reforming methanol fuel cell Avgouropoulos G, Paxinou A, Neophytides S International Journal of Hydrogen Energy, 39(31), 18103, 2014 |
10 |
Control and experimental characterization of a methanol reformer for a 350 W high temperature polymer electrolyte membrane fuel cell system Andreasen SJ, Kaer SK, Sahlin S International Journal of Hydrogen Energy, 38(3), 1676, 2013 |