Literature Cited
Geyer, R., Jambeck, J. R., and Law, K. L., Production, use, and fate of all plastics ever made, Science Advances 3(7):e1700782 (2017).
10.1126/sciadv.1700782Barnes, D. K., Galgani, F., Thompson, R. C., and Barlaz, M., Accumulation and fragmentation of plastic debris in global environments, Philosophical Transactions of the Royal Society B: Biological Sciences 364:1985-1998 (2009).
10.1098/rstb.2008.0205Houge, C., Microplastic beads pollute great lakes, Chemical & Engineering News 91:23-25 (2013).
10.1021/cen-09137-govpol1Galloway, T. and Lewis, C., Marine microplastics, Current Biology 27:R445-R446 (2017).
10.1016/j.cub.2017.01.043Andrady, A. L., Microplastics in the marine evnironment, Marine Pollution Bulletin 62:1506-1605 (2011).
10.1016/j.marpolbul.2011.05.030Gericke, M., Trygg, J., and Fardim, P., Functional cellulose beads: Preparation, characterization, and applications, Chemical Reviews 113:4812-4836 (2013).
10.1021/cr300242jLeslie, H. A., Plastic in cosmetics; Are we polluting the environment through our personal care?, Report from United Nationals Environmental Programme (UNEP) (2015).
Murphy, F., Ewins, C., Carbonnier, F., and Quinn, B., Wastewater treatment works (WwTW) as a source of microplastics in the aquatic environment, Environmental Science & Technology 50(11):5800-5808 (2016).
10.1021/acs.est.5b05416Kim, K. W., Current status of plastic pollution and the scientific policy to solve the problem, KAST Research Report 123, The Korean Academy of Science and Technology (2018).
Moon, S. M., Jeon, S. H., Eom, T., and Shim, B. S., Recent research trends in eco-friendly materials for solving environmental micro-plastic problems, Prospectives of Industrial Chemistry 22(2):25-43 (2019).
Sen, S., Martin, J. D., and Argyropoulos, D. S., Review of cellulose non-derivatizing solvent interactions with emphasis on activity in inorganic molten salt hydrates, Sustainable Chemistry & Engineering 1(8):858-870 (2013).
10.1021/sc400085aOlsson, C. and Westman, G., Direct dissolution of cellulose: Background, means and applications, In Cellouse – Fundamental Aspects, Ch. 6, van de Ven, T. and Godbout, L., (ed.), InTech, Rijeka, Croatia pp.143-178 (2013).
10.5772/52144Kostag, M., Gericke, M., Heinze, T., and El Seoud, O. A., Twentty-five years of cellulose chemistry: Innovations in the dissolution of the biopolymer and its transformation into esters and ethers, Cellulose 26:139-184 (2019).
10.1007/s10570-018-2198-0El Seoud, O. A., Kostag, M., Jedvert, K., and Maletk, N. I., Cellulose in ionic liquids and alkaline solutions: Advances in the mechanisms of biopolymer dissolution and regeneration, Polymers 11:1919 (2019).
10.3390/polym11121917Zhong, C., Cheng, F., Zhu, Y., Gao, Z., Jia, H., and Wei, P., Dissolution mechanism of cellulose in quaternary ammonium hydroxide: Revisiting through molecular interactions, Carbohydrate Polymers 174:400-408 (2017).
10.1016/j.carbpol.2017.06.078Zhong, C., Wang, C., Wang, F., Jia, H., Wei, P., and Zhao, Y., Application of tetra-n-methylammonium hydroxide on cellulose dissolution and isolation from sugarcane bagasse, Carbohydrate Polymers 136:979-987 (2016).
10.1016/j.carbpol.2015.10.001Medronho, B., Filipe, A., Napso, S., Khalfin, R. L., Pereira, R. F. P., Bermudez, V. d. Z., Romando, A., and Cohen, Y., Silk fibroin dissolution in tetrabutylammonium hydroxide aqueous solution, BioMacromolecules, 20(11):4107-4116 (2019).
10.1021/acs.biomac.9b00946Swensson, B., Larsson, A., and Hasani, M., Dissolution of cellulose using a combination of hydroxide bases in aqueous solution, Cellulose 27:101-112 (2020).
10.1007/s10570-019-02780-8Swensson, B., Larsson, A., and Hasani, M., Probing interaction in combined hydroxide base solvents for improving dissolution of cellulose, Polymers 12:1310 (2020).
10.3390/polym12061310Chen, X., Chen, X., Cai, X.-M., Huang, S., and Wang, F., Cellulose dissolution in mixed solvent of tetra(n-butyl)ammonium hydroxide/dimethyl sulfoxide via radical reactions, ACS Sustainable Chemistry&Engineering 6:2898-2904 (2018).
10.1021/acssuschemeng.7b04491Kostag, M. and El Seoud, O. A., Dependence of cellulose dissolution in quaternary ammonium-based ionic liquids/DMSO on molecular structure of the electrolyte, Carbohydrate Polymers 205:524-532 (2019).
10.1016/j.carbpol.2018.10.055Zhang, J., Wang, M., Li, W., Wei, W., Li, J., Jiang, M., Wang, Y., and Zhou, Z., TBAH/Urea/H2O2 solvent for room temperature wet-spinning of cellulose and optimization of drawing process, Cellulose 26:6959-6977 (2019).
10.1007/s10570-019-02536-4Sirvio, J. A., and Heiskanen, J. P., Room-temperautre dissolution and chemical modification of cellulose in aqueous tetraethylammonium hydroxide-carbamide solutions, Cellulose 27:1933-1950 (2020).
10.1007/s10570-019-02907-xWalters, M. G., Mando, A. D., Reichert, W. M., West, C. W., West, K. N., and Rabidesu, B. D., The role of urea in the solubility of cellulose in aqueous quanternary ammonium hydroxide, RSC Advances 10:5919-5929 (2020).
10.1039/C9RA07989KSegal, L., Creely, J. J., Martin, A. E. Jr., and Conrad, C. M., An empirical method for estimating the degree of crystallinity of native cellulose using the X-ray diffractometer, Textile Research Journal 29(10):786-794 (1959).
10.1177/004051755902901003Tseng, Y.-H., Lee, Y.-Y., and Chen, S.-H., Synthesis of quaternary ammonium room-temperature ionic liquids and their application in the dissolution of cellulose, Applied Sciences 9:1750 (2019).
10.3390/app9091750Zhang, H., Zhang, Z., and Liu, K., Regenerated lignocellulose beads prepared with wheat straw, BioResources 11(2):4281-4294 (2016).
10.15376/biores.11.2.4281-4294Åkerholm, M., Hinterstoisser, B., and Salmén, L., Characterization of the crystalline structure of cellulose using static and dynamic FT-IR spectroscopy, Carbohydate Research 339(3):569-578 (2004).
10.1016/j.carres.2003.11.012- Publisher :Korea Technical Association of The Pulp and Paper Industry
- Publisher(Ko) :한국펄프종이공학회
- Journal Title :Journal of Korea TAPPI
- Journal Title(Ko) :펄프종이기술
- Volume : 52
- No :6
- Pages :149-156
- Received Date : 2020-12-08
- Revised Date : 2020-12-19
- Accepted Date : 2020-12-22
- DOI :https://doi.org/10.7584/JKTAPPI.2020.12.52.6.149


Journal of Korea TAPPI






