E. Pasquier and J. Ruwoldt
Journal of Bioresources and Bioproducts 10 (2025) 325–335
Kopacic, S., Ortner, A., Guebitz, G., Kraschitzer, T., Leitner, J., Bauer, W., 2018. Technical lignins and their utilization in the surface sizing of paperboard. Ind. Eng. Chem. Res. 57, 6284–6291 . Li, D.L., Wu, J.Q., Peng, W.X., Xiao, W.F., Wu, J.G., Zhuo, J.Y., et al., 2015. Effect of lignin on bamboo biomass self-bonding during hot-pressing: lignin structure and characterization. Bio. Res. 10, 6769–6782 . Mattsson, A., Joelsson, T., Miettinen, A., Ketoja, J.A., Pettersson, G., Engstrand, P., 2021. Lignin inter-diffusion underlying improved mechanical performance of hot-pressed paper webs. Polymers (Basel) 13, 2485 . Maximova, N., Österberg, M., Koljonen, K., Stenius, P., 2001. Lignin adsorption on cellulose fibre surfaces: effect on surface chemistry, surface morphology and paper strength. Cellulose 8, 113–125 . Maximova, N., Österberg, M., Laine, J., Stenius, P., 2004. The wetting properties and morphology of lignin adsorbed on cellulose fibres and mica. Colloids Surf. A Physicochem. Eng. Aspects 239, 65–75 . Mendes, A.C., Pedersen, G.A., 2021. Perspectives on sustainable food packaging: is bio-based plastics a solution. Trends Food Sci. Technol. 112, 839–846 . Oliaei, E., Berthold, F., Berglund, L.A., Lindström, T., 2021. Eco-friendly high-strength composites based on hot-pressed lignocellulose microfibrils or fibers. ACS Sustainable Chem. Eng. 9, 1899–1910 . Pasquier, E., Skunde, R., Ruwoldt, J., 2023. Influence of temperature and pressure during thermoforming of softwood pulp. J. Bioresour. Bioprod. 8, 408–420 . Sanchez-Salvador, J.L., Pettersson, G., Mattsson, A., Blanco, A., Engstrand, P., Negro, C., 2024. Extending the limits of using chemithermomechanical pulp by combining lignin microparticles and hot-pressing technology. Cellulose 31, 9335–9348 . Schenker, U., Chardot, J., Missoum, K., Vishtal, A., Bras, J., 2021. Short communication on the role of cellulosic fiber-based packaging in reduction of climate change impacts. Carbohydr. Polym. 254, 117248 . Schneider, W.D.H., Dillon, A.J.P., Camassola, M., 2021. Lignin nanoparticles enter the scene: a promising versatile green tool for multiple applications. Biotechnol. Adv. 47, 107685 . Schäfer, J.L., Schölch, S., Prucker, O., Brandstetter, T., Rühe, J., Stockert, A.R.V., et al., 2021. Accessibility of fiber surface sites for polymeric additives determines dry and wet tensile strength of paper sheets. Cellulose 28, 5775–5791 . Seier, M., Archodoulaki, V.M., Koch, T., 2024. The morphology and properties of recycled plastics made from multi-layered packages and the consequences for the circular economy. Resour. Conserv. Recycl. 202, 107388 . Semple, K.E., Zhou, C.L., Rojas, O.J., Nkeuwa, W.N., Dai, C.P., 2022. Moulded pulp fibers for disposable food packaging: a state-of-the-art review. Food Packag. Shelf Life 33, 100908 . Singh, V., Bachala, S.K., Madan, M., Ahuja, A., Rastogi, V.K., 2024. A comprehensive comparison between synthetic and bio-based wet-strength additives for paper manufacturing. Cellulose 31, 4645–4679 . Tanase-Opedal, M., Ruwoldt, J., 2022. Organosolv lignin as a green sizing agent for thermoformed pulp products. ACS Omega 7, 46583–46593 . Wang, H.Q., Wang, J.L., Si, S.R., Wang, Q., Li, X.S., Wang, S.F., 2021a. Residual-lignin-endowed molded pulp lunchbox with a sustained wet support strength. Ind. Crops Prod. 170, 113756 . Wang, J.L., Chen, W., Dong, T.T., Wang, H.Q., Si, S.R., Li, X.S., 2021b. Enabled cellulose nanopaper with outstanding water stability and wet strength via activated residual lignin as a reinforcement. Green Chem 23, 10062–10070 . Wang, Q.L., Xiao, S.L., Shi, S.Q., Cai, L.P., 2019. Mechanical property enhancement of self-bonded natural fiber material via controlling cell wall plasticity and structure. Mater. Des. 172, 107763 . Zhang, Y.L., Duan, C., Bokka, S.K., He, Z.B., Ni, Y.H., 2022a. Molded fiber and pulp products as green and sustainable alternatives to plastics: a mini review. J. Bioresour. Bioprod. 7, 14–25 . Zhang, Y.Z., Qian, Y.Y., Liu, Y.J., Lei, C.F., Qiu, G., Chen, G., 2022b. Multivalent metal ion cross-linked lignocellulosic nanopaper with excellent water resistance and optical performance. Biomacromolecules 23, 1920–1927 . Zhao, Y.L., Yue, J.Q., Tao, L.C., Liu, Y.S., Shi, S.Q., Cai, L.P., et al., 2020. Effect of lignin on the self-bonding of a natural fiber material in a hydrothermal environment: lignin structure and characterization. Int. J. Biol. Macromol. 158, 1135–1140 .
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