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Biotechnology for Biofuels|November 27, 2014
Correlating the ability of lignocellulosic polymers to constrain water with the potential to inhibit cellulose saccharificationMichael J Selig, Lisbeth G Thygesen, Claus Felby
Current Opinion in Biotechnology|February 15, 2014
Advancing lignocellulose bioconversion through direct assessment of enzyme action on insoluble substratesRobyn E Goacher, Michael J Selig, Emma R Master
Food & Function|January 16, 2018
Formation of shelf stable Pickering high internal phase emulsions (HIPE) through the inclusion of whey protein microgelsSomayeh Zamani, Nicholas Malchione, Michael J Selig, et al.
Biotechnology Letters|October 23, 2014
Debranching of soluble wheat arabinoxylan dramatically enhances recalcitrant binding to celluloseMichael J Selig, Lisbeth G Thygesen, Claus Felby, et al.
Biotechnology Letters|April 6, 2012
Precipitation of Trichoderma reesei commercial cellulase preparations under standard enzymatic hydrolysis conditions for lignocellulosesPiotr Chylenski, Claus Felby, Mai Østergaard Haven, et al.
Applied Biochemistry and Biotechnology|February 14, 2009
The effect of lignin removal by alkaline peroxide pretreatment on the susceptibility of corn stover to purified cellulolytic and xylanolytic enzymesMichael J Selig, Todd B Vinzant, Michael E Himmel, et al.
Bioresource Technology|November 17, 2007
Synergistic enhancement of cellobiohydrolase performance on pretreated corn stover by addition of xylanase and esterase activitiesMichael J Selig, Eric P Knoshaug, William S Adney, et al.
Biotechnology Letters|February 3, 2011
High throughput determination of glucan and xylan fractions in lignocellulosesMichael J Selig, Melvin P Tucker, Cody Law, et al.
Biotechnology Letters|July 25, 2013
Hydration and saccharification of cellulose Iβ, II and III(I) at increasing dry solids loadingsMichael J Selig, Lisbeth G Thygesen, David K Johnson, et al.
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