1 - 7 |
Effect of sodium sulfite on acid pretreatment of wheat straw with respect to its final conversion to ethanol Jaisamut K, Paulova L, Patakova P, Kotucova S, Rychtera M |
8 - 18 |
Field trial results of straw yield with different harvesting methods, and modelled effects on soil organic carbon. A case study from Southern Finland Hakala K, Heikkinen J, Sinkko T, Pahkala K |
19 - 26 |
Repolymerization of pyrolytic lignin for producing carbon fiber with improved properties Qu WD, Xue Y, Gao YW, Rover M, Bai XL |
27 - 34 |
Evaluation of the performance of improved biomass cooking stoves with different solid biomass fuel types Suresh R, Singh VK, Malik JK, Datta A, Pal RC |
35 - 44 |
The fixed dome digester: An appropriate design for the context of Sub-Sahara Africa? Mungwe JN, Colombo E, Adani F, Schievano A |
45 - 54 |
Production of ethanol by thermophilic oligosaccharide utilising Geobacillus thermoglucosidasius TM242 using palm kernel cake as a renewable feedstock Raita M, Ibenegbu C, Champreda V, Leak DJ |
55 - 63 |
Cellulose-hemicellulose interactions during fast pyrolysis with different temperatures and mixing methods Wu SL, Shen DK, Hu J, Zhang HY, Xiao R |
64 - 77 |
Five years left - How are the EU member states contributing to the 20% target for EU's renewable energy consumption; the role of woody biomass Proskurina S, Sikkema R, Heinimo J, Vakkilainen E |
78 - 83 |
Effects of organosolv pretreatment and acid hydrolysis on palm empty fruit bunch (PEFB) as bioethanol feedstock Nurfahmi, Ong HC, Jan BM, Tong CW, Fauzi H, Chen WH |
84 - 91 |
Biogas production from reed biomass: Effect of pretreatment using different steam explosion conditions Lizasoain J, Rincon M, Theuretzbacher F, Enguidanos R, Nielsen PJ, Potthast A, Zweckmair T, Gronauer A, Bauer A |
92 - 98 |
Delignification of rapeseed straw using innovative chemo-physical pretreatments Brahim M, El Kantar S, Boussetta N, Grimi N, Brosse N, Vorobiev E |
99 - 108 |
Energy self-sufficient production of bioethanol from a mixture of hemp straw and triticale seeds: Life-cycle analysis Buck M, Senn T |
109 - 115 |
Harvesting microalgae using ozoflotation releases surfactant proteins, facilitates biomass recovery and lipid extraction Gonzalez MTV, Monje-Ramirez I, Ledesma MTO, Fadrique JG, Velasquez-Orta SB |
116 - 123 |
Using rye as cover crop for bioenergy production: An environmental and economic assessment Igos E, Golkowska K, Koster D, Vervisch B, Benetto E |
124 - 131 |
Using tree crop pruning residues for energy purposes: A spatial analysis and an evaluation of the economic and environmental sustainability Torquati B, Marino D, Venanzi S, Porceddu P, Chiorri M |
132 - 136 |
Utilization of corn fiber for production of schizophyllan Leathers TD, Nunnally MS, Stanley AM, Rich JO |
137 - 145 |
Chemometric analysis of composition of bio-crude and aqueous phase from hydrothermal liquefaction of thermally and chemically pretreated Miscanthus x giganteus Madsen RB, Lappa E, Christensen PS, Jensen MM, Klemmer M, Becker J, Iversen BB, Glasius M |
146 - 156 |
Spatially resolved chemical species concentrations above the fuel bed of a small grate-fired wood-chip boiler Buchmayr M, Gruber J, Hargassner M, Hochenauer C |
157 - 166 |
Simulation of air-steam gasification of woody biomass in a bubbling fluidized bed using Aspen Plus: A comprehensive model including pyrolysis, hydrodynamics and tar production Pauls JH, Mahinpey N, Mostafavi E |
167 - 173 |
Biochar and plant growth promoting rhizobacteria effects on switchgrass (Panicum virgatum cv. Cave-in-Rock) for biomass production in southern Quebec depend on soil type and location Shanta N, Schwinghamer T, Backer R, Allaire SE, Teshler I, Vanasse A, Whalen J, Baril B, Lange S, MacKay J, Zhou XM, Smith DL |
174 - 181 |
Characterization of pine wood liquid and solid residues generated during industrial hydrothermal treatment Herrera R, da Silva DT, Llano-Ponte R, Labidi J |
182 - 193 |
Understanding macromolecules formation from the catalytic hydroconversion of pyrolysis bio-oil model compounds Ozagac M, Bertino-Ghera C, Uzio D, Rivallan M, Laurenti D, Geantet C |
194 - 205 |
Impact of guaiacol on the formation of undesired macromolecules during catalytic hydroconversion of bio-oil: A model compounds study Ozagac M, Bertino-Ghera C, Uzio D, Rivallan M, Laurenti D, Geantet C |
206 - 213 |
King Grass: A very promising material for the production of second generation ethanol in tropical countries Cardona E, Rios J, Pena J, Penuela M, Rios L |
214 - 220 |
An intensified reaction technology for high levulinic acid concentration from lignocellulosic biomass Kang SM, Yu J |
221 - 234 |
Technoeconomic analysis of camelina oil extraction as feedstock for biojet fuel in the Canadian Prairies Mupondwa E, Li X, Tabil L, Falk K, Gugel R |
235 - 243 |
Enhancement of lipid productivity with a novel two-stage heterotrophic fed-batch culture of Chlorella protothecoides and a trial of CO2 recycling by coupling with autotrophic process Wang T, Tian XW, Liu TT, Wang ZJ, Guan WY, Guo MJ, Chu J, Zhuang YP |
244 - 256 |
Modeling and analysis of renewable heat integration into non-domestic buildings - The case of biomass boilers: A whole life asset-supply chain management approach Nasiri F, Mafakheri F, Adebanjo D, Haghighat F |
257 - 272 |
A review of biomass potential and current utilisation - Status quo for 93 biogenic wastes and residues in Germany Brosowski A, Thran D, Mantau U, Mahro B, Erdmann G, Adler P, Stinner W, Reinhold G, Hering T, Blanke C |
273 - 285 |
Optimisation of bio-oil production by hydrothermal liquefaction of agro-industrial residues: Blackcurrant pomace (Ribes nigrum L.) as an example Deniel M, Haarlemmer G, Roubaud A, Weiss-Hortala E, Fages J |
286 - 286 |
Biorefinery 1 crete - Editorial Abatzoglou N, Kersten SRA, Meier D |
287 - 295 |
Fractionation of flash pyrolysis condensates by staged condensation Schulzke T, Conrad S, Westermeyer J |
296 - 309 |
Separation technology-Making a difference in biorefineries Kiss AA, Lange JP, Schuur B, Brilman DWF, van der Ham AGJ, Kersten SRA |
310 - 329 |
Evaluation of alternatives for the evolution of palm oil mills into biorefineries Garcia-Nunez JA, Rodriguez DT, Fontanilla CA, Ramirez N, Lora EE, Frear CS, Stockle C, Amonette J, Garcia-Perez M |
330 - 339 |
Synthetic fuels from 3-phi Fischer-Tropsch synthesis using syngas feed and novel nanometric catalysts synthesised by plasma Aluha J, Abatzoglou N |
340 - 343 |
Esterification of oleic acid with ethanol in the presence of Amberlyst 15 Hykkerud A, Marchetti JM |
344 - 353 |
Impact of the heating mechanism on the yield and composition of bio-oil from pyrolysis of kraft lignin Farag S, Mudraboyina BP, Jessop PG, Chaouki J |
354 - 363 |
Production of crude bio-oil via direct liquefaction of spent K-Cups Yang LX, Mahmood N, Corscadden K, Xu CB, He Q |
364 - 377 |
Using 2D NMR to characterize the structure of the low and high molecular weight fractions of bio-oil obtained from LignoBoost (TM) kraft lignin depolymerized in subcritical water Mattsson C, Andersson SI, Belkheiri T, Amand LE, Olausson L, Vamling L, Theliander H |
378 - 387 |
Supercritical water gasification of timothy grass as an energy crop in the presence of alkali carbonate and hydroxide catalysts Nanda S, Dalai AK, Kozinski JA |
388 - 404 |
Using pyrolytic acid leaching as a pretreatment step in a biomass fast pyrolysis plant: Process design and economic evaluation Oudenhoven SRG, van der Ham AGJ, van den Berg H, Westerhof RJM, Kersten SRA |
405 - 415 |
Castor bean cake residues upgrading towards high added value products via fast catalytic pyrolysis Kalogiannis KG, Stefanidis SD, Michailof CM, Lappas AA |
416 - 423 |
Influence of temperature and residence time in the pyrolysis of woody biomass waste in a continuous screw reactor Solar J, de Marco I, Caballero BM, Lopez-Urionabarrenechea A, Rodriguez N, Agirre I, Adrados A |
424 - 435 |
Bio-hydrocarbons through catalytic pyrolysis of used cooking oils and fatty acids for sustainable jet and road fuel production Chiaramonti D, Buffi M, Rizzo AM, Lotti G, Prussi M |
436 - 448 |
A multicriteria comparison of utilizing sugar cane bagasse for methanol to gasoline and butanol production Michailos S, Parker D, Webb C |