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2023 Vol.55, Issue 5 Preview Page

Research Article

30 October 2023. pp. 96-105
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Sofla, M. R. K., Brown, R. J., Tsuzuki, T., and Rainey, T. J. A comparison of cellulose nanocrystals and cellulose nanofibres extracted from bagasse using acid and ball milling methds, Advances in Natural Sciences: Nanoscience and Nanotechnology 7(3):1-9 (2016). 10.1088/2043-6262/7/3/035004
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Dieter, K., Friederike, K., Sebastian, M., Tom, L., Mikael, A., Derek, G., and Annie, D. Nanocelluloses: A new family of nature-based materials, Angewandte Chemie International Edition 50(24):5438-5466 (2011). 10.1002/anie.20100127321598362
Youssef Habibi. Key advances in the chemical modification of nanocellulose, Chemical Society Reviews 43(5):1519-1542 (2014). 10.1039/C3CS60204D24316693
Taylor, Geoffrey Ingram. VIII. Stability of a viscous liquid contained between two ratating cylinders. Philosophical Transactions of the Royal Society of London. Series A, Containing Papers of a Mathematical or Physical Character 223(605-615):289-343 (1923). 10.1098/rsta.1923.0008
Chong, Y. C., Staton, D. A., Mueller, M. A., and Chick, J. An experimental study of rotational pressure loss in rotor-stator gap, Propulsion and Power Research 6(2):147-156 (2017). 10.1016/j.jppr.2017.05.007
Jo, H. M., Kim D. H., Lee, S. H., Lee, J. Y., and Park, R. S. Development of domestic taylor-flow nanogrinder for manufacturing cellulose nanofiber I -Evaluation of the physical properties of enzyme-pretreated cellulose nanofiber for the performance evaluation of a pilot scale taylor-flow nanogrinder-, Journal of Korea TAPPI 54(5):5-13 (2022). 10.7584/JKTAPPI.2022.
Sharma, S., Nair, S. S., Zhang, Zhe, Z., Ragauskas, A. J., and Deng, Y. Cheracterization of micro fibrillation process of cellulose and mercerized cellulose pulp. RCS Advances 5(77):63111-63122 (2015). 10.1039/C5RA09068G
Jo, H. M., Lee, S. H., Lee, J. Y., and Park, R. S. Development of domestic taylor-flow nanogrinder for manufacturing cellulose nanofiber II -Evaluation of the physical properties of carboxymethylated cellulose nanofibers made from bleached kraft pulps-, Journal of Korea TAPPI 54(6):34-42 (2022). 10.7584/JKTAPPI.2022.
Park, T. U., Lee, J. Y., Jo, H. M., and Kim, K. M. Utilization of cellulose micro/nanofibrils as paper additive for the manufacturing of security paper, Bioresources 13(4):7780-7791. 10.15376/biores.13.4.7780-7791
Gourlay, K., van der Zwan, T., Shourav, M., and Saddler, J. The potential of endoglucanases to rapidly and specifically enhance the rheological properties of micro/nanofibrillated cellulose, Cellulose 25:977-986 (2018). 10.1007/s10570-017-1637-7
Dahiya, D., Ceccherini, S., and Maloney, T. C. Impact of high consistency enzymatic hydrolysis and defibration drying on cellulose fiber pore characteristics, Cellulose 30:7607-7618 (2023). 10.1007/s10570-023-05398-z
  • Publisher :Korea Technical Association of The Pulp and Paper Industry
  • Publisher(Ko) :한국펄프종이공학회
  • Journal Title :Journal of Korea TAPPI
  • Journal Title(Ko) :펄프종이기술
  • Volume : 55
  • No :5
  • Pages :96-105
  • Received Date : 2023-09-18
  • Revised Date : 2023-10-23
  • Accepted Date : 2023-10-24