1 |
Application of laser induced breakdown spectroscopy for direct and quick determination of fuel property of woody biomass pellets Lu ZM, Chen XX, Jiang Y, Li X, Chen JZ, Li YS, Lu WY, Lu JD, Yao SC Renewable Energy, 164, 1204, 2021 |
2 |
Utilization of woody biomass combustion fly ash as a filler in the glue used for plywood production Fukui K, Momen K, Ichiba G, Fukasawa T, Ishigami T Advanced Powder Technology, 31(11), 4482, 2020 |
3 |
Biomass and potential energy yield of perennial woody energy crops under reduced planting spacing Schwerz F, Neto DD, Caron BO, Nardini C, Sgarbossa J, Eloy E, Behling A, Elli EF, Reichardt K Renewable Energy, 153, 1238, 2020 |
4 |
DEM modelling for flow of cohesive lignocellulosic biomass powders: Model calibration using bulk tests Pachon-Morales J, Do H, Colin J, Puel F, Perre P, Schott D Advanced Powder Technology, 30(4), 732, 2019 |
5 |
Contribution of the wood-processing industry for sustainable power generation: Viability of biomass-fuelled cogeneration in Sub-Saharan Africa Nzotcha U, Kenfack J Biomass & Bioenergy, 120, 324, 2019 |
6 |
The economics of dedicated hybrid poplar biomass plantations in the western U.S Chudy RP, Busby GM, Binkley CS, Stanton BJ Biomass & Bioenergy, 124, 114, 2019 |
7 |
Reusing, recycling and up-cycling of biomass: A review of practical and kinetic modelling approaches Osman AI, Abdelkader A, Farrell C, Rooney D, Morgan K Fuel Processing Technology, 192, 179, 2019 |
8 |
미이용 산림바이오매스 및 폐목재의 기포 유동층 Air 가스화 특성 연구 한시우, 서명원, 박성진, 손성혜, 윤상준, 라호원, 문태영, 문지홍, 윤성민, 김재호, 이은도, 정수화, 양창원, 이영우 Korean Chemical Engineering Research, 57(6), 874, 2019 |
9 |
Torrefaction of woody biomasses from poplar SRC and Portuguese roundwood: Properties of torrefied products Rodrigues A, Loureiro L, Nunes LJR Biomass & Bioenergy, 108, 55, 2018 |
10 |
A systems approach to risk and resilience analysis in the woody-biomass sector: A case study of the failure of the South African wood pellet industry Bowd R, Quinn NW, Kotze DC, Guilfoyle MJ Biomass & Bioenergy, 108, 126, 2018 |