Document Type : Research Paper

Authors

1 Associate prof., Wood and Forest Products Division, Research Institute of Forests and Rangelands, Agricultural Research Education and Extension Organization (AREEO). Tehran, Iran.

2 Ph.D. candidate, Department of Wood and Paper Science and Technology, Faculty of Natural Resources, University of Tehran, Karaj, Iran

Abstract

Background and objectives: In addition to reducing the consumption of various resources such as water, energy, and wood, paper recycling is constantly increasing in different countries due to less pollution. One of the major defects of the old corrugated container (OCC) is its relatively weak strength, which has limited its use in various sections of the packaging industry. In this study, the effect of using some additives was studied to improve the strengths of OCC to make the top liner of cartons in both wet and dry conditions.
Methodology: OCC was prepared from domestically produced cartons. To determine the performance and optimal amount of additives, corn cationic starch (at 1, 1.4 and, 2%), wet strength resin (at 1, 2 and, 3%), AKD (at 1, 2 and, 3%), and imported tea envelope recycled long fiber paper (at 10, 15 and, 20%) were separately used as additives based on the dry weight of OCC pulp. The handsheets made by laboratory sheet former with a basis weight of 120 g/m2 and then tensile, burst, and tear indices were measured at wet and dry conditions to compare the effect of additives. Also, water absorption was measured by the Cobb test on the test samples. The optimal level of each additive was determined based on the results, then handsheets made from optimal combination treatment including appropriate levels of all additives, and different properties of handsheets were statistically compared.
Results: The water absorption of handsheet was decreased by 90% compared to the control by adding AKD. This additive was able to decline the water absorption of handsheet made from OCC to about 20 g/m2 as the suitable range. The greatest increase of wet tensile strength of the handsheet was achieved using 3% wet strength resin compared to the control. The resin maintained the wet tensile, burst, and tear indices of the residual strength of handsheet by 25, 46, and 58%, respectively, compared to dry strengths so it has good performance. The results showed that by adding cationic corn starch and recycled long fiber paper, all the dry strengths of handsheet independently increased compared to the control. The optimal combination treatment was determined according to the independent use of additives in OCC pulp, including 1% cationic starch, 1% AKD, and 3% wet strength resin based on technical-economic considerations. There is no significant difference between dry tensile and burst strength of handsheet using this treatment and 20% recycled long fiber paper, which both means ranked statistically in the same group.
 
Conclusion: The use of 20% recycled long fiber paper of tea wrapper has significantly improved the dry strength of OCC pulp, but adding 1% cationic corn starch to OCC pulp caused a few increases of dry strength. The wet strength of handsheet was significantly improved by adding 3% wet strength resin whereas 1% AKD significantly decreased the water absorption of the OCC pulp to 14 g/m2. The optimal combination treatment of chemical additives including 1% cationic corn starch, 1% AKD, and 3% wet strength resin improved the wet and dry strength of handsheet made from OCC pulp that could be used for packaging products that should be kept in refrigerator and freezer.

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-Ashori, A. and Nourbakhsh, A., 2008. A comparative study on mechanical properties and water absorption behavior of fiber‐reinforced polypropylene composites prepared by OCC fiber and aspen fiber. Polymer Composites, 29(5), pp.574-578.
-Bhardwaj, N.K., Kumar, S. and Bajpai, P.K., 2005. Effect of zeta potential on retention and drainage of secondary fibres. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 260(1-3), pp.245-250.
-Bhardwaj, S., Bhardwaj, N.K. and Negi, Y.S., 2016. Effect of chitosan and cationic starch as wet-end additives to enhance the strength properties of paperboard using OCC recycled pulp. IPPTA-The Official International Journal, 28(4), pp.164-172.
-Charani, P.R. and Moradian, M.H., 2019. Utilization of cellulose nanofibers and cationic polymers to improve breaking length of paper. Cellul Chem Technol, 53(7–8), pp.767-774.
-Chan, L.L., 1994. Wet-strength resins and their application. Tappi Pr.
-Chen, H., Yang, J., Hu, Z., Zheng, B., Sun, J., Wo, Q., Zeng, X., Qiu, X., Song, C. and Zhu, R., 2019. Effects of AKD sizing on the morphology and pore distribution properties of OCC fibers. Journal of Nanomaterials, pp.1-6.
-Dash, S. and Swain, S.K., 2013. Synthesis of thermal and chemical resistant oxygen barrier starch with reinforcement of nano silicon carbide. Carbohydrate polymers, 97(2), pp.758-763.
-Dunlop-Jones, N., 1997. Paper chemistry, second edition, Blackie academic & professional, London, UK. Chapter 7 Wet -strength chemistry, 265 p.
-Francolini, I., Galantini, L., Rea, F., Di Cosimo, C. and Di Cosimo, P., 2023. Polymeric Wet-Strength Agents in the Paper Industry: An Overview of Mechanisms and Current Challenges. International Journal of Molecular Sciences, 24(11), p.9268.
-Ghasemian, A. and Khalili, A., 2011. Principle and methods of paper recycle. Tehran. (In Persian)
-Grigoriev, V., Strengell, K., Virtanen, M. and Hietaniemi, M., 2012. Strength chemistry for board and tissue production: Scientific outlook and end applications.
-Grommers, H.E., Van der Krogt, D.A., Miller, J. and Whistler, R., 2009. Starch: Chemistry and Technology. Elsevier Inc, 511, p.539.
-Ghaffari, M., Ghasemian, A., Resalati, H. and Asadpour, G., 2012. Determination of the optimum use of cationic starch on the basis of the mechanical strengths of mixed OCC and virgin NSSC pulps. Iranian Journal of Wood and Paper Industries2(2), pp.121-133. (In Persian)
-Hamzeh, Y., Sabbaghi, S., Ashori, A., Abdulkhani, A. and Soltani, F., 2013. Improving wet and dry strength properties of recycled old corrugated carton (OCC) pulp using various polymers. Carbohydrate polymers, 94(1), pp.577-583.
-Hamzeh, Y., Najafi, S.M.H., Hubbe, M.A., Salehi, K. and Firouzabadi, M.R.D., 2012. Recycling potential of unbleached and bleached chemical pulps from juvenile and mature wood of Populus deltoides. 155-161.
-Karimi, L., Aryaie Monfared, M.H. and Afra, E., 2022. Influence of Cationic Starch and Nano-Wood addition on improving the Old Corrugated Containers (OCC) pulp properties. Iranian Journal of Wood and Paper Industries, 12(4), pp.481-493. (In Persian)
-Kirwan, M.J. ed., 2012. Handbook of paper and paperboard packaging technology. John Wiley & Sons.
-Khosravani, A., Asadollahzadeh, M., Rahmaninia, M., Bahramifar, N. and Azadfallah, M., 2016. The effect of external and internal application of organosilicon compounds on the hydrophobicity of recycled OCC paper. BioResources, 11(4), pp.8257-8268.
-Koubaa, A. and Koran, Z., 2018. Effect of press-drying parameters on paper properties. Pulp and paper processing, pp.87-107.
-Marcello, C. and Salam, A., 2023. A biobased synthesized N-hydroxymethyl starch-amide for enhancing the wet and dry strength of paper products. Carbohydrate Polymers, 299, p.120194.
-Mosavi, N., Nazarnezhad, N.A. and Zabihzadeh, M., 2013. Study of the Performance of the Cationic Startch of Potatoes and Wheat in Improving the Strength Properties of the Paper Produced from Old Corrugated Cartons. Forest and Wood Products66(1), pp.125-133.
-Schier, F., Morland, C., Dieter, M. and Weimar, H., 2021. Estimating supply and demand elasticities of dissolving pulp, lignocellulose-based chemical derivatives and textile fibres in an emerging forest-based bioeconomy. Forest Policy and Economics, 126, p.102422.
-Sharma, D., Kumar, V. and Sharma, P., 2020. Application, synthesis, and characterization of cationic galactomannan from ruderal species as a wet strength additive and flocculating agent. ACS omega, 5(39), pp.25240-25252.
-Soleimani, R., Asadpour,G, Resaleti, H., 2015. The effect of using cationic starch on increasing old corrugated container dewatering and strength properties, collection of papers of first national conference of wood and lignocellulosic materials, May, Gonbad Kavous University. (In Persian)
-Tajik, M., Torshizi, H.J., Resalati, H. and Hamzeh, Y., 2018. Effects of cationic starch in the presence of cellulose nanofibrils on structural, optical and strength properties of paper from soda bagasse pulp. Carbohydrate polymers, 194, pp.1-8.
-Lindström, T., Wågberg, L. and Larsson, T., 2005, September. On the nature of joint strength in paper-A review of dry and wet strength resins used in paper manufacturing. In 13th fundamental research symposium (Vol. 1, pp. 457-562). Cambridge, UK: The Pulp and Paper Fundamental Research Society.
-Siqueira, E.J., 2012. Polyamidoamine epichlorohydrin-based papers: mechanisms of wet strength development and paper repulping (Doctoral dissertation, Grenoble).
-Varshoei, A., Javid, E., Rahmaninia, M. and Rahmany, F., 2013. The performance of alkylketene dimer (AKD) for the internal sizing of recycled OCC pulp. Lignocellulose Journal2(1), pp.316-326.
-Yadollahi, R., Hamzeh, Y., Mahdavi, H. and Pourmousa, S., 2015. Influence of Glyoxylated Polyacrylamide on Dry and Wet Web Strengths of Paper.
-Yang, W., Ding, Y., Liang, J., Li, C., Bian, H., Dai, H. and Hu, C., 2023. Constructing carboxymethyl cellulose-metal ion crosslinked networks in old corrugated recycled paper enhances its strength and wet stability. Cellulose, pp.1-13.
-Yoon, S.Y. and Deng, Y., 2006. Clay–starch composites and their application in papermaking. Journal of Applied Polymer Science, 100(2), pp.1032-1038.