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The chemistry of side reactions and byproduct formation in the system NMMO/cellulose (Lyocell process)
- T. Rosenau, A. Potthast, H. Sixta, P. Kosma
- Chemistry
- 1 November 2001
Mechanical Properties of Regenerated Cellulose Fibres for Composites
- Ramesh-Babu Adusumali, M. Reifferscheid, H. Weber, T. Roeder, H. Sixta, W. Gindl
- Materials Science
- 1 December 2006
Summary: A broad variety of regenerated cellulose fibres was subjected to single fibre tensile tests in order to determine the modulus of elasticity, tensile strength, and failure strain. The results…
Effect of autohydrolysis of Eucalyptus globulus wood on lignin structure. Part 1: Comparison of different lignin fractions formed during water prehydrolysis
- M. Leschinsky, G. Zuckerstaetter, H. Weber, R. Patt, H. Sixta
- Materials Science
- 1 November 2008
Abstract The effect of autohydrolysis of Eucalyptus globulus wood was studied with regard to conditions applied in a prehydrolysis-kraft process on the physico-chemical properties of lignin obtained…
Role of solvent parameters in the regeneration of cellulose from ionic liquid solutions.
- Lauri K. J. Hauru, M. Hummel, Alistair W. T. King, I. Kilpeläinen, H. Sixta
- ChemistryBiomacromolecules
- 20 August 2012
TLDR
Novel concepts of dissolving pulp production
- H. Sixta, Mikhail Iakovlev, H. Schottenberger
- ChemistryCellulose
- 17 May 2013
Herein, we report about existing and novel dissolving pulp processes providing the basis for an advanced biorefinery. The SO2–ethanol–water (SEW) process has the potential to replace the acid…
Potential of hot water extraction of birch wood to produce high-purity dissolving pulp after alkaline pulping.
- Marc Borrega, Lasse K Tolonen, F. Bardot, L. Testova, H. Sixta
- Materials Science, BiologyBioresource technology
- 1 May 2013
Degradation kinetics of the main carbohydrates in birch wood during hot water extraction in a batch reactor at elevated temperatures.
- Marc Borrega, K. Nieminen, H. Sixta
- Materials ScienceBioresource technology
- 1 November 2011
Comparative evaluation of autohydrolysis and acid-catalyzed hydrolysis of Eucalyptus globulus wood.
- J. Gütsch, T. Nousiainen, H. Sixta
- ChemistryBioresource technology
- 1 April 2012
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