Literature Cited
Liu, Y., Shi, L., Cheng, D., and He, Z., Dissolving pulp market and technologies: Chinese Prospective–A mini-review, Bioresources 11(3):7902-7916 (2016).
Kumar, H. and Christopher, L. P., Recent trends and developments in dissolving pulp production and application, Cellulose 24:2347-2365 (2017).
10.1007/s10570-017-1285-yChen, Z., Zhang, H., He, Z., and Zhang, L., Current and future markets of dissolving pulp in China and other countries, Bioresources 14(4):7627-7629 (2019).
Sixta, H., Iakovlev, M., Testova, L., Roselli, A., Hummel, M., Borrega, M., Heiningen, A., Froschauer, C., and Schottenberger, H., Novel concepts of dissolving pulp production, Cellulose 20:1547-1561 (2013).
10.1007/s10570-013-9943-1Li, H., Legere, S., He, Z., Zhang, H., Li, J., Yang, B., Zhang, S., Zhang, L., Zheng, L., and Ni, Y., Methods to increase the reactivity of dissolving pulp in the viscose rayon production process: a review, Cellulose 25:3733-3753 (2018).
10.1007/s10570-018-1840-1Borrega, M., Larsson, P. T., Ahvenainen, P., Ceccherini, S., Maloney, T., Rautkari, L., and Sixta, H., Birchwood pre-hydrolysis vs pulp post-hydrolysis for the production of xylanbased compounds and cellulose for viscose application, Carbohydr. Polym. 190:212-221 (2018).
10.1016/j.carbpol.2018.02.064Ma, X., Huang, L., Chen, Y., Cao, S., and Chen, L., Preparation of bamboo dissolving pulp for textile production, Bioresources 6(2):1428-1439 (2011).
Jahan, M. S., Studies on the effect of prehydrolysis and amine in cooking liquor on producing dissolving pulp from jute (Corchorus capsularis), Wood Sci. Technol. 43:213-224 (2009).
10.1007/s00226-008-0213-6Chen, C., Duan, C., Li, J., Liu, Y., Ma, X., Zheng, L., Stavik, J., and Ni, Y., Cellulose (Dissolving pulp) manufacturing processes and properties: A mini-review, Bioresource 11(2):5553-5564 (2016).
10.15376/biores.11.2.ChenMiao, Q., Chen, L., Huang, L., Tian, C., Zheng, L., and Ni, Y., A process for enhancing the accessibility and reactivity of hardwood kraft-based dissolving pulp for viscose rayon production by cellulase treatment, Bioresour. Technol. 154:109-113 (2014).
10.1016/j.biortech.2013.12.040Björquist, S., Aronsson, J., Henriksson, G., and Persson, A., Textile qualities of regenerated cellulose fibers from cotton waste pulp, Text. Res. J. 88(21):2485-2492 (2018).
10.1177/0040517517723021Selkälä, T., Suopajärvi, T., Sirviö, J. A., Luukkonen, T., Lorite, G. S., Kalliola, S., Sillanpää, M., and Liimatainen, H., Rapid uptake of pharmaceutical salbutamol from aqueous solutions with anionic cellulose nanofibrils: The importance of pH and colloidal stability in the interaction with ionizable pollutants, Chem. Eng. J. 350:378-385 (2018).
10.1016/j.cej.2018.05.163Aulin, C., Gällstedt, M., and Lindström, T., Oxygen and oil barrier properties of microfibrillated cellulose films and coatings, Cellulose 17:559-574 (2010).
10.1007/s10570-009-9393-ySugesty, S., Kardiansyah, T., and Hardiani, H., Bamboo as raw materials for dissolving pulp with environmental friendly technology for rayon fiber, Procedia Chem. 17:194-199 (2015).
10.1016/j.proche.2015.12.122Andrade, M. F. and Colodette, J. L., Dissolving pulp production from sugar cane bagasse, Ind. Crop. Prod. 52:58-64 (2014).
10.1016/j.indcrop.2013.09.041Jahan, M. S., Al-Maruf, A., and Quaiyyum, M. A., Comparative studies of pulping of jute fiber, jute cutting, and jute caddis, Bangladesh J. Sci. Ind. Res. 42(4):425-434 (2007).
10.3329/bjsir.v42i4.750Behin, J., Mikaniki, F., and Fadaei, Z., Dissolving pulp (alpha-cellulose) from corn stalk by kraft process, Iran. J. Chem. Eng. 5(3):14-28 (2008).
Wang, W., Cai, Z., Yu, J., and Xia, Z., Changes in composition, structure, and properties of jute fibers after chemical treatments, Fiber. Polym. 10(6):776-780 (2009).
10.1007/s12221-009-0776-3Islam, M. S. and Ahmed, S. K., The impact of jute on environment: An analytical review of Bangladesh, Environt. Earth. Sci. 2(5):24-31 (2012).
Sarkar, M., Nayeem, J., Popy, R. S., Quadery, A. H., and Jahan, M. S., Dissolving pulp from jute wastes, Bioresour. Technol. Rep. 4:96-100 (2018).
10.1016/j.biteb.2018.09.008Nayeem, J., Sarkar, M., Quadery, A. H., and Jahan, M. S., High purity dissolving pulp from jute, Nord. Pulp Pap. Res. J. 32(4):623-629 (2017).
10.3183/NPPRJ-2017-32-04-p620-629Duan, C., Li, J., Ma, X., Chen, C., Liu, Y., Stavik, J., and Ni, Y., Comparison of acid sulfite (AS)- and prehydrolysis kraft (PHK)-based dissolving pulps, Cellulose 22:4017-4026 (2015).
10.1007/s10570-015-0781-1Jönsson, L. J. and Martín, C., Pretreatment of lignocellulose: Formation of inhibitory by-products and strategies for minimizing their effects, Bioresour. Technol. 199:103-112 (2016).
10.1016/j.biortech.2015.10.009Wang, W., Cai, Z., and Yu, J., Study on the chemical modification process of jute fiber, J. Eng. Fiber and Fabr. 3(2):1-11 (2008).
10.1177/155892500800300203Chandrasekhar, S., Satyanarayana, K. G., Pramada, P. N., and Raghavan, P., Processing, properties and applications of reactive silica from rice husk–an overview, J. Mater. Sci. 38:3159-3168 (2003).
Hafemann, E., Battisti, R., Bresolin, D., Marangoni, C., and Machado, R. A. F., Enhancing chlorine-free purification routes of rice husk biomass waste to obtain cellulose nanocrystals, Waste Biomass Valori. 1:6595-6611 (2020).
10.1007/s12649-020-00937-2Río, J. C., Marques, G., Rodríguez, I. M., and Gutiérrez, A., Chemical composition of lipophilic extractives from jute (Cochorus capsularis) fibers used for manufacturing of high-quality paper pulps, Ind. Crop. Prod. 30:241-249 (2009).
10.1016/j.indcrop.2009.04.001Qiu, H., Liu, R., and Long, L., Analysis of chemical composition of extractives by acetone and the chromatic aberration of teak (Tectona grandis L.F.) from China, Molecules 24(1989):1-11 (2019).
10.3390/molecules24101989Jahan, M. S., Kanna, G. H., Mun, S. P., and Chowdhury, D. A. N., Variations in chemical characteristics and pulp ability within jute plant (Chorcorus capsularis), Ind. Crop. Prod. 28:199-205 (2008).
10.1016/j.indcrop.2008.02.013Deshavath, N. N., Mohan, M., Veeranki, V. D., Goud, V. V., Pinnamaneni, S. R., and Benarjee, T., Dilute acid pretreatment of sorghum biomass to maximize the hemicellulose hydrolysis with minimized levels of fermentative inhibitors for bioethanol production, Biotechnol. 7(139):1-12 (2017).
10.1007/s13205-017-0752-3Idrees, M., Adnan, A., Sheikh, S., and Qureshi, F. A., Optimization of dilute acid pretreatment of water hyacinth biomass for enzymatic hydrolysis and ethanol production, EXCLI J. 12:30-40 (2013).
10.1155/2013/934171Matin, M., Rahaman, M. M., Nayeem, J., Sarkar, M., and Jahan, M. S., Dissolving pulp from jute stick, Carbohydr. Polym. 115:44-48 (2015).
10.1016/j.carbpol.2014.08.090Dubey, A. K., Gupta, P. K., Garg, N., and Naithani, S., Bioethanol production from waste paper acid pretreated hydrolysate with xylose fermenting Pichi stipites, Carbohydr. Polym. 88:825-829 (2012).
10.1016/j.carbpol.2012.01.004Niu, M., Hou, Y., Ren, S., Wang, W., Zheng, Q., and Wu, W., The relationship between oxidation and hydrolysis in the conversion of cellulose in NaVO3–H2SO4 aqueous solution with O2, Green Chem. 17:335-342 (2015).
10.1039/C4GC00970CQi, L., Mui, Y. F., Lo, S. W., Lui, M. Y., Akien, G. R., and Horváth, I. T., Catalytic conversion of fructose, glucose, and sucrose to 5-(Hydroxymethyl) furfural and levunilic and formic acids in γ-valerolactone as a green solvent, ACS Catal. 4(5):1470-1477 (2014).
10.1021/cs401160y- 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 :5
- Pages :65-73
- Received Date : 2021-07-05
- Revised Date : 2021-10-15
- Accepted Date : 2021-10-17
- DOI :https://doi.org/10.7584/JKTAPPI.2021.10.53.5.65


Journal of Korea TAPPI






