1 - 11 |
Use of a participatory approach to develop a regional assessment tool for bioenergy production Vaidya A, Mayer AL |
12 - 20 |
The utilization of soybean straw III: Isolation and characterization of lignin from soybean straw Liu ZL, Meng LK, Chen JQ, Cao YF, Wang ZG, Ren H |
21 - 30 |
An integrated Multi-Regional Input-Output (MRIO) Analysis of miscanthus biomass production in France: Socio-economic and climate change consequences de la Rua C, Lechon Y |
31 - 38 |
Complete saccharification of cellulose through chemo-enzymatic hydrolysis Lim HK, Kim DR, Lee KI, Hwang DW, Hwang IT |
39 - 45 |
Acidified glycerol pretreatment for enhanced ethanol production from rice straw Trinh LTP, Lee JW, Lee HJ |
46 - 56 |
Sweet sorghum as a whole-crop feedstock for ethanol production Barcelos CA, Maeda RN, Anna LMMS, Pereira N |
57 - 65 |
The introduction and expansion of biomass use in Swedish district heating systems Ericsson K, Werner S |
66 - 77 |
Potential of Tunisian Alfa (Stipa tenassicima) fibers for energy recovery to 2G bioethanol: Study of pretreatment, enzymatic saccharification and fermentation Zaafouri K, Ziadi M, Ben Farah R, Farid M, Hamdi M, Regaya I |
78 - 84 |
Cost-effective biomass supply from orchard termination with highly-mobile low-investment equipment Picchi G, Pari L, Aminti G, Spinelli R |
85 - 93 |
Validation of prediction models for estimating the moisture content of logging residues during storage Routa J, Kolstrom M, Ruotsalainen J, Sikanen L |
94 - 104 |
Ensiling for biogas production: Critical parameters. A review Franco RT, Buffiere P, Bayard R |
105 - 109 |
Hemicellulose and lignin removal to improve the enzymatic digestibility and ethanol production Yu Q, Zhuang XS, Wang W, Qi W, Wang Q, Tan XS, Kong XY, Yuan ZH |
110 - 116 |
Bioethanol production from pretreated Miscanthus floridulus biomass by simultaneous saccharification and fermentation Yeh RH, Lin YS, Wang TH, Kuan WC, Lee WC |
117 - 129 |
Characterization of free radicals by electron spin resonance spectroscopy in biochars from pyrolysis at high heating rates and at high temperatures Trubetskaya A, Jensen PA, Jensen AD, Glarborg P, Larsen FH, Andersen ML |
130 - 145 |
Comparison of chemical treatment methods for loblolly pine to utilize as enzyme hydrolyzate feedstock Jain A, Bridges WC |
146 - 154 |
Characterization of cellulose structure of Populus plants modified in candidate cellulose biosynthesis genes Bali G, Khunsupat R, Akinosho H, Payyavula RS, Samuel R, Tuskan GA, Kalluri UC, Ragauskas AJ |
155 - 166 |
Logistics cost analysis of rice straw pellets for feasible production capacity and spatial scale in heat utilization systems: A case study in Nanporo town, Hokkaido, Japan Ishii K, Furuichi T, Fujiyama A, Watanabe S |
167 - 172 |
Ozonolysis of alkaline lignin and sugarcane bagasse: Structural changes and their effect on saccharification Barrera-Martinez I, Guzman N, Pena E, Vazquez T, Ceron-Camacho R, Folch J, Salazar JAH, Aburto J |
173 - 186 |
Design of sustainable second-generation biomass supply chains Yazan DM, van Duren I, Mes M, Kersten S, Clancy J, Zijm H |
187 - 200 |
A re-look at the biochemical strategies to enhance butanol production Maiti S, Gallastegui G, Sarma SJ, Brar SK, Le Bihan Y, Drogui P, Buelna G, Verma M |
201 - 208 |
Influence of moisture content and hammer mill screen size on the physical quality of barley, oat, canola and wheat straw briquettes Guo L, Tabil LG, Wang DC, Wang GH |
209 - 219 |
Woody biofuel production from short rotation coppice in Italy: Environmental-impact assessment of different species and crop management Bacenetti J, Bergante S, Facciotto G, Fiala M |
220 - 227 |
Production of polyhydroxybuyrate (PHB) from switchgrass pretreated with a radio frequency-assisted heating process Wang XF, Zhang ZT, Wang Y, Wang YF |
228 - 244 |
Biochar from microwave pyrolysis of biomass: A review Li J, Dai JJ, Liu GQ, Zhang HD, Gao ZP, Fu J, He YF, Huang Y |
245 - 257 |
Energy and climate impact assessment of waste wood recovery in Switzerland Bergeron FC |
258 - 267 |
Development and test of a simplified method to calculate dry matter loss during open-air storage of poplar wood chips by analysing ash contents Lenz H, Pecenka R, Hartung E, Idler C |