1 |
Combining a land surface model with life cycle assessment for identifying the optimal management of short rotation coppice in Belgium Djomo SN, De Grootek T, Gobin A, Ceulemans R, Janssens IA Biomass & Bioenergy, 121, 78, 2019 |
2 |
Generic applicability of non-destructive biomass yield models for willow short rotation coppice: A case study for Germany and Lithuania Linkevicius E, Schroder J, Rohle H Biomass & Bioenergy, 121, 89, 2019 |
3 |
Three bulk density measurement methods provide different results for commercial scale harvests of willow biomass chips Eisenbies MH, Volk TA, Therasme O, Hallen K Biomass & Bioenergy, 124, 64, 2019 |
4 |
Char quality response surfaces from torrefaction of coppiced willow in a horizontal moving bed pilot plant Campbell WA, Woytiuk K, Gerspacher R, Coller A, Evitts RW Canadian Journal of Chemical Engineering, 97(1), 84, 2019 |
5 |
Advanced bioactive lipid nanocarriers loaded with natural and synthetic anti-inflammatory actives Lacatusu I, Badea N, Badea G, Mihaila M, Ott C, Stan R, Meghea A Chemical Engineering Science, 200, 113, 2019 |
6 |
Influence of blending and hot water extraction on the quality of wood pellets Eisenbies MH, Volk TA, Amidon TE, Shi S Fuel, 241, 1058, 2019 |
7 |
Influence of soil chemical and physical characteristics on willow yield in Connecticut Kuzovkina YA, Schulthess CP, Zheng D Biomass & Bioenergy, 108, 297, 2018 |
8 |
Improving bioenergy feedstock quality of high moisture short rotation woody crops using air classification Emerson RM, Hernandez S, Williams CL, Lacey JA, Hartley DS Biomass & Bioenergy, 117, 56, 2018 |
9 |
Life cycle assessment of thermal energy production from short-rotation willow biomass in Southern Ontario, Canada Dias GM, Ayer NW, Kariyapperuma K, Thevathasan N, Gordon A, Sidders D, Johannesson GH Applied Energy, 204, 343, 2017 |
10 |
High capacitive performance of hollow activated carbon fibers derived from willow catkins Wang K, Song Y, Yan R, Zhao N, Tian XD, Li X, Guo QG, Liu ZJ Applied Surface Science, 394, 569, 2017 |