A systematic structural characterization of dissolving grade cellulose pulp in aqueous NMMO solution is performed under the process conditions of lyocell slurry. Different types of cellulosic pulps such as hard/soft wood and acid sulfite/kraft sulphate pulps are used for the present study. The structural changes of pulp in lyocell slurry at different temperatures are characterized in terms of dimension, interstitial spaces, crystallinity using Optical (weight and thickness gain), SEM and XRD measurement technique, respectively. It was observed that kraft sulphate pulp has higher weight gain and lower thickness gain compared to acid sulphite pulps due to its pulping process chemistry. These results are further supported by SEM and XRD analysis. It is also found that above 50 °C, hardwood kraft sulphate pulp shows homogeneous and consistent swelling compared to other pulp combinations. These findings are commercially useful, because, homogeneous swelling of pulp is one of the essential parameters of slurry preparation.
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http://dx.doi.org/10.1016/j.carbpol.2018.11.004 | DOI Listing |
Carbohydr Polym
February 2019
National Centre for Nanosciences and Nanotechnology, University of Mumbai, Kalina Campus, Kalina, Santacruz (E), Mumbai 400098, India. Electronic address:
A systematic structural characterization of dissolving grade cellulose pulp in aqueous NMMO solution is performed under the process conditions of lyocell slurry. Different types of cellulosic pulps such as hard/soft wood and acid sulfite/kraft sulphate pulps are used for the present study. The structural changes of pulp in lyocell slurry at different temperatures are characterized in terms of dimension, interstitial spaces, crystallinity using Optical (weight and thickness gain), SEM and XRD measurement technique, respectively.
View Article and Find Full Text PDFUltrason Sonochem
December 2018
Institute of Chemical Technology (ICT), Matunga, Mumbai 400019, India; National Centre for Nanosciences and Nanotechnology, University of Mumbai, Kalina Campus, Kalina, Santacruz (E), Mumbai 400098, India. Electronic address:
The present study deals with the effect of ultrasound on the swelling and dissolution behavior of the cellulose pulp. Hardwood, acid sulfite cellulose pulp sheets were sonicated at different temperatures, operated at a fixed frequency (37 kHz) and power (320 W) to break the intermolecular forces and hydrogen bonds of crystalline region. The obtained samples were evaluated for crystallinity, intrinsic viscosity, molecular weight (MW), molecular weight distribution (MWD) and surface morphology.
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