Kraft pulping of softwood chips with mild hot water pre-hydrolysis to understand the effects of wood chip thickness
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[1] Na Liu,et al. Change of structural features and relocalization of chemical components in the autohydrolyzed poplar wood chips enhance the accessibility of remaining components , 2021 .
[2] Danielle M Charron,et al. Enhancing Kraft based dissolving pulp production by integrating green liquor neutralization , 2021 .
[3] A. Kruse,et al. Prehydrolysis and organosolv delignification process for the recovery of hemicellulose and lignin from beech wood , 2020 .
[4] L. Rautkari,et al. Pressurized hot water extraction of Scots pine sapwood: effect of wood size on obtained treatment products , 2020, Biomass Conversion and Biorefinery.
[5] Xue Feng Chang,et al. Evolution of Hemicellulose Molar Mass during Softwood Hydrolysis , 2020 .
[6] W. Farhat,et al. Hemicellulose extraction and characterization for applications in paper coatings and adhesives , 2017 .
[7] Varun Rangu. Fractionation of pulp mill waste to produce hemicellulose oligomers for adsorption onto NBSK pulp , 2017 .
[8] Zhaoyang Yuan,et al. Response of Biomass Species to Hydrothermal Pretreatment , 2017 .
[9] Xue Feng Chang,et al. Increasing efficiency of enzymatic hemicellulose removal from bamboo for production of high-grade dissolving pulp. , 2017, Bioresource technology.
[10] S. V. D. Bosch,et al. Influence of Acidic (H3PO4) and Alkaline (NaOH) Additives on the Catalytic Reductive Fractionation of Lignocellulose , 2016 .
[11] Karin Ackermann,et al. Handbook For Pulp Paper Technologists , 2016 .
[12] S. Shaler,et al. Influence of hot-water extraction on ultrastructure and distribution of glucomannans and xylans in poplar xylem as detected by gold immunolabeling , 2016 .
[13] Q. Hou,et al. Understanding of pH value and its effect on autohydrolysis pretreatment prior to poplar chemi-thermomechanical pulping. , 2015, Bioresource technology.
[14] R. Sun,et al. Structural characterization of hemicelluloses and topochemical changes in Eucalyptus cell wall during alkali ethanol treatment. , 2015, Carbohydrate polymers.
[15] Chunlin Xu,et al. Obtaining spruce hemicelluloses of desired molar mass by using pressurized hot water extraction. , 2014, ChemSusChem.
[16] Xun Zhang,et al. Impact of Alkali Pretreatment on the Chemical Component Distribution and Ultrastructure of Poplar Cell Walls , 2014 .
[17] D. Murzin,et al. Spruce Hemicellulose for Chemicals Using Aqueous Extraction: Kinetics, Mass Transfer, and Modeling , 2014 .
[18] Youngmi Kim,et al. Severity factor coefficients for subcritical liquid hot water pretreatment of hardwood chips , 2014, Biotechnology and bioengineering.
[19] A. Ragauskas,et al. Suppression of pseudo-lignin formation under dilute acid pretreatment conditions , 2014 .
[20] A. Act,et al. REDUCTION OF YIELD LOSS IN KRAFT PULPING OF HOT WATER PRE-EXTRACTED BEECH WOOD , 2014 .
[21] H. Sixta,et al. Potential of hot water extraction of birch wood to produce high-purity dissolving pulp after alkaline pulping. , 2013, Bioresource technology.
[22] Shijie Liu,et al. Hot-water extraction and its effect on soda pulping of aspen woodchips. , 2012 .
[23] Allen J. Smith. Hot Water Extraction and Subsequent Kraft Pulping of Pine Wood Chips , 2011 .
[24] C. Vila,et al. Extracting value from Eucalyptus wood before kraft pulping: effects of hemicelluloses solubilization on pulp properties. , 2011, Bioresource technology.
[25] A. V. van Heiningen,et al. Hemicellulose Removal from Hardwood Chips in the Pre-Hydrolysis Step of the Kraft-Based Dissolving Pulp Production Process , 2010 .
[26] T. Song,et al. Extraction of galactoglucomannan from spruce wood with pressurised hot water , 2008 .
[27] Amie D. Sluiter,et al. Preparation of Samples for Compositional Analysis , 2008 .
[28] R. Ruiz,et al. Determination of Sugars, Byproducts, and Degradation Products in Liquid Fraction Process Samples , 2008 .
[29] G. Henriksson,et al. Lignin depolymerization/repolymerization and its critical role for delignification of aspen wood by steam explosion. , 2007, Bioresource technology.
[30] A. van Heiningen,et al. Converting a kraft pulp mill into an integrated forest biorefinery. , 2006 .
[31] C. Wyman,et al. Features of promising technologies for pretreatment of lignocellulosic biomass. , 2005, Bioresource technology.
[32] E. Pye,et al. The lignol approach to biorefining of woody biomass to produce ethanol and chemicals , 2005, Applied biochemistry and biotechnology.
[33] G. Henriksson,et al. New Method for Quantitative Preparation of Lignin- Carbohydrate Complex from Unbleached Softwood Kraft Pulp: Lignin-Polysaccharide Networks I , 2003 .
[34] D. Argyropoulos. Wood and Cellulosic Chemistry. Second Edition, Revised and Expanded Edited by David N.-S. Hon (Clemson University) and Nubuo Shiraishi (Kyoto University). Marcel Dekker: New York and Basel. 2001. vii + 914 pp. $250.00. ISBN 0-8247-0024-4. , 2001 .
[35] R. L. Miller,et al. Chip thickness: a critical dimension in kraft pulping. , 1970 .
[36] William C. Feist,et al. A Mechanism for Improving the Digestibility of Lignocellulosic Materials with Dilute Alkali and Liquid Ammonia , 1969 .