Literature Cited
Ifuku, S. and Yano, H., Effect of a silane coupling agent on the mechanical properties of a microfibrillated cellulose composite, International Journal of Biological Macromolecules 74:428-432 (2015).
10.1016/j.ijbiomac.2014.12.029Wang, L., Sanders, J. E., Gardner D. G., and Han, Y., In-situ modification of cellulose nanofibrils by organosilanes during spray drying, Industrial Crops and Products 93:129-135 (2016).
10.1016/j.indcrop.2016.02.004Jain, V., Xiao, H. N., and Ni, Y. H., Grafting of poly (methyl acrylate) onto sulfite pulp fibers and its effect on water absorbance, Journal of Applied Polymer Science 105:3195-3203 (2007).
10.1002/app.26229Román-Aguirre, M., Márquez-Lucero, A., and Zaragoza-Contreras, E. A., Elucidating the graft copolymerization of methyl methacrylate onto wood-fiber, Carbohydrate Polymers 55:201-210 (2004).
10.1016/j.carbpol.2003.09.008Misra, B. N., Mehta, I. K., and Khetarpal, R. C., Grafting onto cellulose. VIII. Graft copolymerization of poly(ethylacrylate) onto cellulose by use of redox initiators. Comparison of initiator reactivities, Journal of Polymer Science: Polymer Chemistry Edition 22:2767-2775 (1984).
10.1002/pol.1984.170221103Bletzinger, J. C., Effect of acetylation on water-binding properties of cellulose, Industrial & Engineering Chemistry Research 35:1206-1210 (1943).
10.1021/ie50407a016Bryne, L. E. and Wålinder, M. E. P., Ageing of modified wood. Part 1: Wetting properties of acetylated, furfurylated, and thermally modified wood, Holzforschung 64:295-304 (2010).
10.1515/hf.2010.040Olaru, N., Olaru, L., Vasile, C., and Ander, P., Surface modified cellulose obtainedby acetylation without solvents of bleached and unbleached kraft pulps, Polimery 56(11–12):834–840 (2011).
10.14314/polimery.2011.834Kim, D. Y., Nishiyama, Y., and Kuga, S., Surface acetylation of bacterial cellulose, Cellulose 9:361–367 (2002).
10.1023/A:1021140726936Sassi, J. F. and Chanzy, H., Ultrastructural aspects of the acetylation of cellulose, Cellulose 2:111-127 (1995).
10.1007/BF00816384Kim, K. J., Nah, G. B., Ryu, J. A., and Eom, T. J., Low temperature, atmospheric pressure and short reaction time (LAS) pulping of Korean mixed oak with glycol ether, Journal of Korea TAPPI 50(2):44-51 (2018).
10.7584/JKTAPPI.2018.04.50.2.44Goldstein, I. S., Jeroski, E. B., Lund, A. E., Nielson, J. F., and Weaver, J. W., Acetylation of wood in lumber thickness, Forest Products Journal, 11:363-370 (1961).
Zhou, X., Lin, X., White, K. L., Lin, S., Wu, H., Cao, S., Huang, L., and Chen, L., Effect of the degree of substitution on the hydrophobicity of acetylate cellulose for production of liquid marbles, Cellulose 23:811-821 (2016).
10.1007/s10570-015-0856-zTserki, V., Matzinos, P., Kokkou, S., and Panayiotou, C., Novel biodegradable composites based on treated lignocellulosic waste flour as filler. Part I. Surface chemical modification and characterization of waste flour, Composites Part A: Applied Science and Manufacturing 36:965-974 (2005).
10.1016/j.compositesa.2004.11.010Chung, T. J., Lee, B. H., Lee, H. J., Kwon, H. J., Jang, W. B., Kim, H. J., and Eom, Y. G., Performance evaluation of bio-composites composed of acetylated kenaf fibers and poly(-lactic acid) (PLA), Elastomers and composites, 46(3):195–203 (2011).
- Publisher :Korea Technical Association of The Pulp and Paper Industry
- Publisher(Ko) :한국펄프종이공학회
- Journal Title :Journal of Korea TAPPI
- Journal Title(Ko) :펄프종이기술
- Volume : 53
- No :3
- Pages :15-22
- Received Date : 2021-04-26
- Revised Date : 2021-06-04
- Accepted Date : 2021-06-07
- DOI :https://doi.org/10.7584/JKTAPPI.2021.06.53.3.15


Journal of Korea TAPPI






