Search Items: Lignocellulose, . hits: 31
** Russmayer, H; Egermeier, M; Marx, H; Leitner, V; Sauer, M Entirely oil palm-based production of 1,3-propanediol with Lentilactobacillus diolivorans.
** Weiland, K; Alge, K; Mautner, A; Bauer, A; Bismarck, A Horse manure as resource for biogas and nanolignocellulosic fibres.
BIORESOURCE TECHNOL. 2023; 372, 128688 WoS PubMed FullText FullText_BOKU** Berger, NJ; Lindorfer, J; Fazeni, K; Pfeifer, C The techno-economic feasibility and carbon footprint of recycling and electrolysing CO2 emissions into ethanol and syngas in an isobutene biorefinery.
SUSTAIN PROD CONSUMP. 2022; 32: 619-637. WoS FullText FullText_BOKU** Kostelac, A; Sutzl, L; Puc, J; Furlanetto, V; Divne, C; Haltrich, D Biochemical Characterization of Pyranose Oxidase from Streptomyces canus-Towards a Better Understanding of Pyranose Oxidase Homologues in Bacteria.
** Wohlschlager, L; Csarman, F; Chang, HC; Fitz, E; Seiboth, B; Ludwig, R Heterologous expression of Phanerochaete chrysosporium cellobiose dehydrogenase in Trichoderma reesei.
** Budtova, T; Aguilera, DA; Beluns, S; Berglund, L; Chartier, C; Espinosa, E; Gaidukovs, S; Klimek-Kopyra, A; Kmita, A; Lachowicz, D; Liebner, F; Platnieks, O; Rodríguez, A; Navarro, LKT; Zou, F; Buwalda, SJ; Biorefinery Approach for Aerogels..
** Filandr, F; Kavan, D; Kracher, D; Laurent, CVFP; Ludwig, R; Man, P; Halada, P Structural Dynamics of Lytic Polysaccharide Monooxygenase during Catalysis.
** Gusenbauer, C; Nypelo, T; Jakob, DS; Xu, XJG; Vezenov, DV; Asaadi, S; Sixta, H; Konnerth, J Differences in surface chemistry of regenerated lignocellulose fibers determined by chemically sensitive scanning probe microscopy.
** Slama, J; Schedle, K; Wetscherek, W; Pekar, D; Schwarz, C; Gierus, M Effects of soybean hulls and lignocellulose on performance, nutrient digestibility, microbial metabolites and immune response in piglets.
ARCH ANIM NUTR. 2020; 74(3): 173-188. WoS PubMed FullText FullText_BOKU** Sun, PC; Laurent, CVFP; Scheiblbrandner, S; Frommhagen, M; Kouzounis, D; Sanders, MG; van Berkel, WJH; Ludwig, R; Kabel, MA Configuration of active site segments in lytic polysaccharide monooxygenases steers oxidative xyloglucan degradation.
** Andlar, M; Rezic, T; Mardetko, N; Kracher, D; Ludwig, R; Santek, B Lignocellulose degradation: An overview of fungi and fungal enzymes involved in lignocellulose degradation.
ENG LIFE SCI. 2018; 18(11): 768-778. WoS FullText FullText_BOKU** Sutzl, L; Laurent, CVFP; Abrera, AT; Schutz, G; Ludwig, R; Haltrich, D Multiplicity of enzymatic functions in the CAZy AA3 family.
APPL MICROBIOL BIOT. 2018; 102(6): 2477-2492. WoS PubMed FullText FullText_BOKU** Colson, J; Kovalcik, A; Kucharczyk, P; Gindl-Altmutter, W Reinforcement of Poly (Lactic Acid) with Spray-dried Lignocellulosic Material.
BIORESOURCES. 2017; 12(1): 1112-1127. WoS FullText FullText_BOKU** Martinez, AT; Ruiz-Duenas, FJ; Camarero, S; Serrano, A; Linde, D; Lund, H; Vind, J; Tovborg, M; Herold-Majumdar, OM; Hofrichter, M; Liers, C; Ullrich, R; Scheibner, K; Sannia, G; Piscitelli, A; Pezzella, C; Sener, ME; Kilic, S; van Berkel, WJH; Guallar, V; Lucas, MF; Zuhse, R; Ludwig, R; Hollmann, F; Fernandez-Fueyo, E; Record, E; Faulds, CB; Tortajada, M; Winckelmann, I; Rasmussen, JA; Gelo-Pujic, M; Gutierre, A; del Rio, JC; Rencoret, J; Alcalde, M Oxidoreductases on their way to industrial biotransformations.
** Lizasoain, J; Rincon, M; Theuretzbacher, F; Enguidanos, R; Nielsen, PJ; Potthast, A; Zweckmair, T; Gronauer, A; Bauer, A Biogas production from reed biomass: Effect of pretreatment using different steam explosion conditions.
BIOMASS BIOENERG. 2016; 95: 84-91. WoS FullText FullText_BOKU** Odabas, N; Arner, H; Bacher, M; Henniges, U; Potthast, A; Rosenau, T Properties of Cellulosic Material after Cationization in Different Solvents.
ACS SUSTAIN CHEM ENG. 2016; 4(4): 2295-2301. WoS FullText FullText_BOKU** Yamabhai, M; Sak-Ubol, S; Srila, W; Haltrich, D Mannan biotechnology: from biofuels to health.
CRIT REV BIOTECHNOL. 2016; 36(1): 32-42. WoS PubMed FullText FullText_BOKU** Obruca, S; Benesova, P; Marsalek, L; Marova, I Use of Lignocellulosic Materials for PHA Production.
CHEM BIOCHEM ENG Q. 2015; 29(2): 135-144. WoS** Theuretzbacher, F; Blomqvist, J; Lizasoain, J; Klietz, L; Potthast, A; Horn, SJ; Nilsen, PJ; Gronauer, A; Passoth, V; Bauer, A; The effect of a combined biological and thermo-mechanical pretreatment of wheat straw on energy yields in coupled ethanol and methane generation..
Bioresour Technol. 2015; 194:7-13 WoS PubMed FullText FullText_BOKU** Theuretzbacher, F; Lizasoain, J; Lefever, C; Saylor, MK; Enguidanos, R; Weran, N; Gronauer, A; Bauer, A; Steam explosion pretreatment of wheat straw to improve methane yields: investigation of the degradation kinetics of structural compounds during anaerobic digestion..
Bioresour Technol. 2015; 179:299-305 WoS PubMed FullText FullText_BOKU** Tirpanalan, Ö; Reisinger, M; Smerilli, M; Huber, F; Neureiter, M; Kneifel, W; Novalin, S; Wheat bran biorefinery--an insight into the process chain for the production of lactic acid..
Bioresour Technol. 2015; 180:242-249 WoS PubMed FullText FullText_BOKU** Sauer, M; Marx, H; Mattanovich, D From rumen to industry.
** Bogolitsyna, A; Becker, M; Dupont, AL; Borgards, A; Rosenau, T; Potthast, A Determination of carbohydrate- and lignin-derived components in complex effluents from cellulose processing by capillary electrophoresis with electrospray ionization-mass spectrometric detection.
J CHROMATOGR A. 2011; 1218(47): 8561-8566. WoS PubMed FullText FullText_BOKU** Krongtaew, C; Messner, K; Ters, T; Fackler, K CHARACTERIZATION OF KEY PARAMETERS FOR BIOTECHNOLOGICAL LIGNOCELLULOSE CONVERSION ASSESSED BY FT-NIR SPECTROSCOPY. PART I: QUALITATIVE ANALYSIS OF PRETREATED STRAW.
BIORESOURCES. 2010; 5(4): 2063-2080. WoS** Kudanga, T; Prasetyo, EN; Sipilä, J; Guebitz, GM; Nyanhongo, GS Reactivity of long chain alkylamines to lignin moieties: implications on hydrophobicity of lignocellulose materials..
J Biotechnol. 2010; 149(1-2):81-87 WoS PubMed FullText FullText_BOKU** Kudanga, T; Prasetyo, EN; Sipila, J; Nyanhongo, GS; Guebitz, GM Chemo-enzymatic functionalisation of lignocellulose materials using oxiranes.
PROCESS BIOCHEM. 2010; 45(9): 1557-1562. WoS FullText FullText_BOKU** Pisanelli, I., Kujawa, M., Spadiut, O., Kittl, R., Halada, P., Volc, J., Mozuch, M.D., Kersten, P., Haltrich, D. and Peterbauer, C. Pyranose 2-oxidase from Phanerochaete chrysosporium—Expression in E. coli and biochemical characterization.
J BIOTECHNOL, 142, 97-106; ISSN 0168-1656 WoS FullText FullText_BOKU** Kittl, R; Sygmund, C; Halada, P; Volc, J; Divne, C; Haltrich, D; Peterbauer, CK; Molecular cloning of three pyranose dehydrogenase-encoding genes from Agaricus meleagris and analysis of their expression by real-time RT-PCR..
Curr Genet. 2008; 53(2):117-127 WoS PubMed FullText FullText_BOKU** Kujawa, M; Volc, J; Halada, P; Sedmera, P; Divne, C; Sygmund, C; Leitner, C; Peterbauer, C; Haltrich, D; Properties of pyranose dehydrogenase purified from the litter-degrading fungus Agaricus xanthoderma..
FEBS J. 2007; 274(3):879-894 WoS PubMed FullText FullText_BOKU** Neureiter, M; Danner, H; Madzingaidzo, L; Miyafuji, H; Thomasser, C; Bvochora, J; Bamusi, S; Braun, R Lignocellulose feedstocks for the production of lactic acid.
Chemical and Biochemical Engineering Quarterly, 18, 1, 55-63 WoS** Schwarz, H., Liebhard, P., Ehrendorfer, K., Ruckenbauer, P. Ertragsverlauf von Miscanthus sinensis 'Giganteus' auf zwei Ackerstandorten in Österreich..
Die Bodenkultur, 44, 253-263 WoS