Effect of harvesting date on the composition and saccharification of Miscanthus x giganteus.
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B. Chabbert | C. Rémond | R. Dheilly | T Le Ngoc Huyen | C Rémond | R M Dheilly | B Chabbert | T. Le Ngoc Huyen
[1] A. Voragen,et al. Effect of pretreatment severity on xylan solubility and enzymatic breakdown of the remaining cellulose from wheat straw. , 2007, Bioresource technology.
[2] Iris Lewandowski,et al. Delayed harvest of miscanthus—influences on biomass quantity and quality and environmental impacts of energy production , 2003 .
[3] D. Fengel,et al. Wood: Chemistry, Ultrastructure, Reactions , 1983 .
[4] Michael D. Casler,et al. Maize stem tissues: cell wall concentration and composition during development , 2006 .
[5] M. Delwiche,et al. Methods for Pretreatment of Lignocellulosic Biomass for Efficient Hydrolysis and Biofuel Production , 2009 .
[6] P. Claassen,et al. Pretreatment of Miscanthus for hydrogen production by Thermotoga elfii , 2002 .
[7] Giuseppe Mazza,et al. Lignin in straw of herbaceous crops , 2008 .
[8] B. Chabbert,et al. Combination of ammonia and xylanase pretreatments: impact on enzymatic xylan and cellulose recovery from wheat straw. , 2010, Bioresource technology.
[9] J. Saddler,et al. Inhibition of cellulase, xylanase and beta-glucosidase activities by softwood lignin preparations. , 2006, Journal of biotechnology.
[10] D. Buxton,et al. Forage Cell Wall Structure and Digestibility , 1993 .
[11] Hansang Jung,et al. Maize stem tissues: ferulate deposition in developing internode cell walls. , 2003, Phytochemistry.
[12] Ye Sun,et al. Hydrolysis of lignocellulosic materials for ethanol production: a review. , 2002, Bioresource technology.
[13] T. Tew,et al. Dry matter partitioning and quality of Miscanthus, Panicum, and Saccharum genotypes in Arkansas, USA. , 2009 .
[14] Monica Ek,et al. Native lignin structure of Miscanthus x giganteus and its changes during acetic and formic acid fractionation. , 2009, Journal of agricultural and food chemistry.
[15] Emmanuel G. Koukios,et al. Agricultural crops and residues as feedstocks for non-food products in Western Europe , 2000 .
[16] C. Lapierre,et al. Thioacidolysis of Poplar Lignins: Identification of Monomeric Syringyl Products and Characterization of Guaiacyl-Syringyl Lignin Fractions , 1986 .
[17] Y. Y. Lee,et al. Pretreatment of corn stover by soaking in aqueous ammonia , 2005, Applied biochemistry and biotechnology.
[18] John Ralph,et al. Plant biology and pathology / Biologie et pathologie végétales Genetic and molecular basis of grass cell-wall degradability. I. Lignin-cell wall matrix interactions ✩ , 2004 .
[19] M. Galbe,et al. Steam pretreatment of H(2)SO(4)-impregnated Salix for the production of bioethanol. , 2008, Bioresource technology.
[20] K. Kaack,et al. Variation in morphology, anatomy and chemistry of stems of Miscanthus genotypes differing in mechanical properties , 2003 .
[21] David K. Johnson,et al. Biomass Recalcitrance: Engineering Plants and Enzymes for Biofuels Production , 2007, Science.
[22] Hansang Jung,et al. Maize Stem Tissues , 2006 .
[23] D. Goring,et al. The Distribution of Lignin in Birch Wood as Determined by Ultraviolet Microscopy , 1970 .
[24] John Clifton-Brown,et al. Miscanthus : European experience with a novel energy crop , 2000 .
[25] Isabelle Bertrand,et al. Quality and decomposition in soil of rhizome, root and senescent leaf from Miscanthus x giganteus, as affected by harvest date and N fertilization , 2010, Plant and Soil.
[26] J. Wilson. Organization of Forage Plant Tissues , 1993 .
[27] Y. Barrière,et al. Relationship of cell wall composition to in vitro cell wall digestibility of maize inbred line stems , 2000 .
[28] B. Chabbert,et al. Biological variability in lignification of maize: Expression of the brown midrib bm2 mutation , 1994 .
[29] T. Lam,et al. Covalent Cross-Links in the Cell Wall , 1994, Plant physiology.
[30] I. Bertrand,et al. Soil decomposition of wheat internodes of different maturity stages: relative impact of the soluble and structural fractions. , 2009, Bioresource technology.
[31] R. Kumar,et al. Effects of cellulase and xylanase enzymes on the deconstruction of solids from pretreatment of poplar by leading technologies , 2009, Biotechnology progress.
[32] Yuan Liu,et al. Effects of Cellulose Crystallinity, Hemicellulose, and Lignin on the Enzymatic Hydrolysis of Miscanthus sinensis to Monosaccharides , 2008, Bioscience, biotechnology, and biochemistry.
[33] J. Kennedy,et al. Xylans and xylanases: Edited by J. Visser, G. Beldman, M.A. Kusters-van Someren and A.G.J. Voragen, Elsevier, Amsterdam, xiii + 576pp. price US$208.50. ISBN 0-444-89477-21992 , 1995 .
[34] Andrew B. Riche,et al. Growth, yield and mineral content of Miscanthus × giganteus grown as a biofuel for 14 successive harvests , 2008 .
[35] J. Beaugrand. Bases cytologiques et moléculaires de la dégradation enzymatique du son de blé tendre , 2003 .
[36] Bryan Bals,et al. Optimization of Ammonia Fiber Expansion (AFEX) Pretreatment and Enzymatic Hydrolysis of Miscanthus x giganteus to Fermentable Sugars , 2007, Biotechnology progress.
[37] B. Chabbert,et al. Structure, chemical composition, and xylanase degradation of external layers isolated from developing wheat grain. , 2004, Journal of agricultural and food chemistry.