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Estimation of lignin content in single, intact pulp fibers by UV photometry and VIS Mueller matrix polarimetry
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Chun Ye
, Jukka Räty , Irma Nyblom , Hanna-Kaisa Hyvärinen and Patricia Moss
Published/Copyright:
July 19, 2018
Published Online: 2018-07-19
Published in Print: 2001-05-01
© 2018 by Walter de Gruyter Berlin/Boston
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- Paper sizing by liquid-type ketene dimers
- Comparison of methods for stabilization of PCC against dissolution at acid papermaking conditions
- Finite element analysis of contact forces in three dimensional, non-bonded fibre networks
- Treatment of mechanical pulp and process waters with lipase
- Model describing Donnan equilibrium, pH and complexation equilibria in fibre suspensions
- Short communication:
- Estimation of lignin content in single, intact pulp fibers by UV photometry and VIS Mueller matrix polarimetry
- A general model of deformation and flow in wet fibre webs under compression
- Experiments in a pilot-scale impulse unit – heat transfer and water removal rates
- Experiments in a pilot-scale impulse unit – energy efficiencies
Keywords for this article
Lignin content;
Softwood kraft pulp fiber;
Wall thickness;
UV-VIS;
Microscopy;
Mueller matrix polarimetry
Articles in the same Issue
- Rheological characterisation of coating colours – comparison between conventional techniques and a slit die system
- Sizing mechanism of rosin emulsion size-alum systems
- Paper sizing by liquid-type ketene dimers
- Paper sizing by liquid-type ketene dimers
- Comparison of methods for stabilization of PCC against dissolution at acid papermaking conditions
- Finite element analysis of contact forces in three dimensional, non-bonded fibre networks
- Treatment of mechanical pulp and process waters with lipase
- Model describing Donnan equilibrium, pH and complexation equilibria in fibre suspensions
- Short communication:
- Estimation of lignin content in single, intact pulp fibers by UV photometry and VIS Mueller matrix polarimetry
- A general model of deformation and flow in wet fibre webs under compression
- Experiments in a pilot-scale impulse unit – heat transfer and water removal rates
- Experiments in a pilot-scale impulse unit – energy efficiencies