Browse by ANZSRC Socio-Economic Objective codes
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- 17 ENERGY (175)
- 1707 Processing of energy sources (12)
- 170701 Biomass processing (9)
- 1707 Processing of energy sources (12)
- 17 ENERGY (175)
A
Allende Leiva, Scarlett, Brodie, Graham, and Jacob, Mohan V. (2023) Breakdown of biomass for energy applications using microwave pyrolysis: A technological review. Environmental Research, 226. 115619.
Allende Leiva, Scarlett, Brodie, Graham, and Jacob, Mohan V. (2023) Energy Recovery from Pumpkin Peel Using Microwave-Assisted Pyrolysis. Energies, 16 (18). 6438.
Allende Leiva, Scarlett (2023) Microwave-assisted pyrolysis for biomass recovery and applications. PhD thesis, James Cook University.
Allende, Scarlett, Liu, Yang, Zafar, Muhammad Zafar, and Jacob, Mohan V. (2023) Nitrite sensor using activated biochar synthesised by microwave-assisted pyrolysis. Waste Disposal and Sustainable Energy, 5.
Allende, Scarlett, Brodie, Graham, and Jacob, Mohan V. (2022) Energy recovery from sugarcane bagasse under varying microwave-assisted pyrolysis conditions. Bioresource Technology Reports, 20. 101283.
F
Fan, Liyuan, Mokhov, Anatoli, Saadabadi, S. Ali, Brandon, Nigel, and Aravind, Purushothaman Vellayani (2021) Methane steam reforming reaction in solid oxide fuel cells: influence of electrochemical reaction and anode thickness. Journal of Power Sources, 507. 230276.
K
Karthikeyan, O.P., Nguyen Hao, H.T., Razaghi, Ali, and Heimann, Kirsten (2018) Recycling of food waste for fuel precursors using an integrated bio-refinery approach. Bioresource Technology, 248 (Part A). pp. 194-198.
S
Sasidhar, K.B., Somasundaram, Murugavelh, Yesuraj, K., Hariharan, S., Antunes, Elsa, Ekambaram, Porpatham, and Kumar Arumugam, Senthil (2023) Optimization and production of renewable fuels from waste cooking oil and low-density polyethylene: Evaluating fuel properties and techno-economic feasibility of diesel replacement. Energy Conversion and Management, 294. 117558.
W
Walker, Craig, and Sheehan, Madoc (2022) Drying Kinetics of Macroalgae as a Function of Drying Gas Velocity and Material Bulk Density, Including Shrinkage. Clean Technologies, 4 (3). pp. 669-689.