Literature Cited
Nechyporchuk, O., Belgacem, M. N., and Bras, J., Production of cellulose nanofibrils: A review of recent advances, Industrial Crops and Products 93:2-25 (2016).
10.1016/j.indcrop.2016.02.016Velasquez-Cock, J., Serpa, A., Velez, L., Ganan, P., Hoyos, C. G., Castro, C., Duizer, L., Goff, H. D., and Zuluaga, R., Influence of cellulose nanofibrils on the structural elements of ice cream, Food Hydrocolloids 87:204-213 (2019).
10.1016/j.foodhyd.2018.07.035Dimic-Misic, K., Salo, T., Paltakari, J., and Gane, P., Comparing the rheological properties of novel nanofibrillar cellulose-formulated pigment coating colours with those using traditional thickener, Nordic Pulp & Paper Research Journal 29(2):253-270 (2014).
10.3183/npprj-2014-29-02-p253-270Zaaba, N. F., Jaafar, M., and Ismail, H., Tensile and morphological properties of nanocrystalline cellulose and nanofibrillated cellulose reinforced PLA bionanocomposites: A review, Polymer Engineering & Science 61(1):22-38 (2020).
10.1002/pen.25560Su, Y., Yang, B., Liu, J., Sun, B., Cao, C., Zou, X., Lutes, R., and He, Z., Prospects for replacement of some plastics in packaging with lignocellulose materials: A brief review, Bioresources 13(2):4550-4576 (2018).
10.15376/biores.13.2.SuPark, 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 (2018).
10.15376/biores.13.4.7780-7791Milanovic, J., Lazic, T., Zivkovic, I., Vuksanovic, M., Milosevic, M., and Kostic, M., The effect of nanofibrillated tempo-oxidized cotton linters on the strength and optical properties of paper, Journal of Natural Fibers he Effect of Nanofibrillated Tempo-oxidized Cotton Linters on the Strength and Optical Properties of Paper 19:1-14 (2020).
10.1080/15440478.2020.1848742Norrrahim, M. N. F., Kasim, N. A. M., Knight, V. F., Halim, N. A., Shah, N. A. A., Noor, S. A. M., Jamal, S. H., Ong, K. K., Yunus, W. M. Z. W., and Farid, M. A. A., Performance evaluation of cellulose nanofiber reinforced polymer composites, Functional Composites and Structures 3(2):024001 (2021).
10.1088/2631-6331/abeef6Lee, J. Y., Kim, C. H., Park, T. U., Jo, H. M., and Kim, K. M., Evaluation of the drainage and the strength of specialty paper made with cellulose nanofibrils originated from cotton fibers, Journal of Korea TAPPI 50(2):68-76 (2018).
10.7584/JKTAPPI.2018.04.50.2.68Saurabh, C. K., Mustapha, A., Masri, M. M., Owolabi, A. F., Syakir, M. I., Dungani, R., Paridah, M. T., Jawaid, M., and Abdul Khalil, H. P. S., Isolation and characterization of cellulose nanofibers from gigantochloa scortechinii as a reinforcement material, Journal of Nanomaterials 2016:40234527 (2016).
10.1155/2016/4024527Onyianta, A. J., Dorris, M., and Williams, R. L., Aqueous morpholine pre-treatment in cellulose nanofibril (CNF) production: comparison with carboxymethylation and TEMPO oxidisation pre-treatment methods, Cellulose 25:1047-1064 (2018).
10.1007/s10570-017-1631-0Lee, J. Y., Kim, K. M., Kim, S. H., Jo, H. M., and Kim, C. H., Study on the quaternization reation conditions for cationic cellulose nanofibril, Journal of Korea TAPPI 51(6):144-151 (2019).
10.7584/JKTAPPI.2019.12.51.6.144Lee, J. H., Kim, C. H., Kim, E, H., Park, T. U., Jeun, J. P., and Kim, S. Y., Evaluation of electron beam irradiation as new pretreatment for cellulose nanofibril production, 48(4):99-106 (2016).
10.7584/JKTAPPI.2016.08.48.4.99Paakko, M., Ankerfors, M., Kosonen, H., Nykanen, A., Aholo, S., Osterberg, M., Ruokolainen, J., Laine, J., Larsson, P. T., Ikkala, O., and Lindstrom, T., Enzymatic hydrolysis combined with mechanical shearing and high-pressure homogenization for nanoscale cellulose fibrils and strong gels, Biomacromolecules 8(6):1934-1941 (2007).
10.1021/bm061215pRibeiro, R. S. A., Pohlmann, B. C., Calado, V., Bojorge, N., and Pereira, N., Production of nanocellulose by enzymatic hydrolysis: Trends and challenges, Engineering in Life Sciences 19(4):279-291 (2019).
10.1002/elsc.201800158Trache, D., Tarchoun, A. F., Derradji, M., Hamidon, T. S., Masruchin, N., Brosse, N., and Hussin, M. H., Nanocellulose: From fundamentals to advanced applications, Frontiers in Chemistry 8:392 (2020).
10.3389/fchem.2020.00392Henriquez-Gallegos, S., Albornoz-Palma, G., Andrade, A., Soto, C., and Pereira, M., Impact of the enzyme charge on the production and morphological features of cellulose nanofibrils, Polymers 13(19):3238 (2021).
10.3390/polym13193238Ahn, E. B., Hong, S. B., Kim, K. J., Eom, T. J., Micro-fibrillated cellulose preparation with enzyme beating pretreatment and effect on paper strength improvement, Journal of Korea TAPPI 47(6):57-65 (2015).
10.7584/ktappi.2015.47.6.057Jeong, K. M., Lee, J. H., Lee, T. J., Ryu, J. Y., and Lee, K. N., The evaluation of the fruit bag property (1) -Property of the oil coated paper(Pear bag paper)-, Journal of Korea TAPPI 49(5):5-11 (2017).
10.7584/JKTAPPI.2017.10.49.5.5Jo, H. M., Lee, J. Y., Kim, S. H., and Lee, Y. H., Strength improvement of the coloring paper for fruit bag by using non-woody bamboo kraft pulp, Journal of Korea TAPPI 52(6):132-139 (2020).
10.7584/JKTAPPI.2020.12.52.6.132Jo, H. M., Lee, J. Y., Kim, S. H., and Lee, Y. H., Effect of nanofibrillated cellulose made from enzyme-pretreated bamboo pulp on paper strength, Bioresources 16(1):964-978 (2021).
10.15376/biores.16.1.964-978- 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 :6
- Pages :12-19
- Received Date : 2021-11-16
- Revised Date : 2021-12-08
- Accepted Date : 2021-12-10
- DOI :https://doi.org/10.7584/JKTAPPI.2021.12.53.6.12


Journal of Korea TAPPI






