Serveur d'exploration sur le peuplier - Exploration (Accueil)

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List of bibliographic references indexed by 1097-0290

Number of relevant bibliographic references: 17.
Ident.Authors (with country if any)Title
001308 (2017) Timo Van Der Zwan [Canada] ; Jinguang Hu [Canada] ; Jack N. Saddler [Canada]Mechanistic insights into the liquefaction stage of enzyme-mediated biomass deconstruction.
001942 (2016) Qiang Yang ; Xuejun Pan [États-Unis]Correlation between lignin physicochemical properties and inhibition to enzymatic hydrolysis of cellulose.
002077 (2014) Stefan Bauer [États-Unis] ; Ana B. Ibá EzRapid determination of cellulose.
002156 (2014) Hongjia Li [États-Unis] ; Yunqiao Pu ; Rajeev Kumar ; Arthur J. Ragauskas ; Charles E. WymanInvestigation of lignin deposition on cellulose during hydrothermal pretreatment, its effect on cellulose hydrolysis, and underlying mechanisms.
002614 (2013) Xing-Feng Huang [États-Unis] ; Navaneetha Santhanam ; Dayakar V. Badri ; William J. Hunter ; Daniel K. Manter ; Stephen R. Decker ; Jorge M. Vivanco ; Kenneth F. ReardonIsolation and characterization of lignin-degrading bacteria from rainforest soils.
002772 (2013) Zhenglun Li [États-Unis] ; Charles H. Chen ; Tongjun Liu ; Vaidyanathan Mathrubootham ; Eric L. Hegg ; David B. HodgeCatalysis with Cu(II) (bpy) improves alkaline hydrogen peroxide pretreatment.
002795 (2013) Hongjia Li [États-Unis] ; Xiadi Gao ; Jaclyn D. Demartini ; Rajeev Kumar ; Charles E. WymanApplication of high throughput pretreatment and co-hydrolysis system to thermochemical pretreatment. Part 2: Dilute alkali.
002796 (2013) Xiadi Gao [États-Unis] ; Rajeev Kumar ; Jaclyn D. Demartini ; Hongjia Li ; Charles E. WymanApplication of high throughput pretreatment and co-hydrolysis system to thermochemical pretreatment. Part 1: dilute acid.
002890 (2012) Daniel Klein-Marcuschamer [États-Unis] ; Piotr Oleskowicz-Popiel ; Blake A. Simmons ; Harvey W. BlanchThe challenge of enzyme cost in the production of lignocellulosic biofuels.
002E52 (2011) Amy L. Vanfossen [États-Unis] ; Inci Ozdemir ; Samantha L. Zelin ; Robert M. KellyGlycoside hydrolase inventory drives plant polysaccharide deconstruction by the extremely thermophilic bacterium Caldicellulosiruptor saccharolyticus.
002E84 (2011) Hong Wu [États-Unis] ; Mauricio Mora-Pale ; Jianjun Miao ; Thomas V. Doherty ; Robert J. Linhardt ; Jonathan S. DordickFacile pretreatment of lignocellulosic biomass at high loadings in room temperature ionic liquids.
002F01 (2011) Seiji Nakagame [Canada] ; Richard P. Chandra ; John F. Kadla ; Jack N. SaddlerEnhancing the enzymatic hydrolysis of lignocellulosic biomass by increasing the carboxylic acid content of the associated lignin.
002F43 (2011) Ying Wang [États-Unis] ; Mark Radosevich ; Douglas Hayes ; Nicole LabbéCompatible ionic liquid-cellulases system for hydrolysis of lignocellulosic biomass.
003085 (2010) Seiji Nakagame [Canada] ; Richard P. Chandra ; Jack N. SaddlerThe effect of isolated lignins, obtained from a range of pretreated lignocellulosic substrates, on enzymatic hydrolysis.
003278 (2010) Michael H. Studer [États-Unis] ; Jaclyn D. Demartini ; Simone Brethauer ; Heather L. Mckenzie ; Charles E. WymanEngineering of a high-throughput screening system to identify cellulosic biomass, pretreatments, and enzyme formulations that enhance sugar release.
003294 (2010) Bowen Du [États-Unis] ; Lekh N. Sharma ; Christopher Becker ; Shou-Feng Chen ; Richard A. Mowery ; G Peter Van Walsum ; C Kevin ChamblissEffect of varying feedstock-pretreatment chemistry combinations on the formation and accumulation of potentially inhibitory degradation products in biomass hydrolysates.
003868 (2008) Bo Zhang [États-Unis] ; Marc Von Keitz ; Kenneth ValentasMaximizing the liquid fuel yield in a biorefining process.

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