PAPERmaking! Vol5 Nr2 2019

bioresources. com

PEER-REVIEWED REVIEW ARTICLE

Khan, R. A., Salmieri, S., Dussault, D., Tufenkji, N., Uribe-Calderon, J., Kamal, M. R., Safrany, A., and Lacroix, M. (2012). “ Preparation and thermo-mechanical characterization of chitosan loaded methylcellulose-based biodegradable films: Effects of gamma rad iation,” Journal of Polymers and the Environment 20(1), 43-52. DOI: 10.1007/s10924-011-0336-y Kijchavengkul, T., and Auras, R. (2008). “Compostability of polymers,” Polymer International 57(6), 793-804. DOI: 10.1002/pi.2420 Kim, H. S., Yang, H. S., and Kim, H. J. (2005). “ Biodegradability and mechanical properties of agro Ǧ flour – filled polybutylene succinate biocomposi tes,” Journal of Applied Polymer Science 97(4), 1513-1521. DOI: 10.1002/app.21905 Klemm, D., Heublein, B., Fink, H.-P., and Bohn, A. (2005). “ Cellulose: Fascinating biopolymer and sustainable raw material ,” Angewandte Chemie International Edition 44, 3358-3393. DOI: 10.1002/anie.200460587 Koller, M. (2014). “ Poly (hydroxyalkanoates) for food packaging: Application and attempts towards implementation,” Applied Food Biotechnology 1(1), 3-15. Kosior, E., Braganca, R. M., and Fowler, P. (2006). “ Lightweight compostable pack- aging: L iterature review,” The Waste and Resources Action Programme 26, 1-48. Kovalcik, A., Machovsky, M., Kozakova, Z., and Koller, M. (2015). “ Designing packaging materials with viscoelastic and gas barrier properties by optimized processing of poly (3-hydroxybutyrate-co-3- hydroxyvalerate) with lignin,” Reactive and Functional Polymers 94, 25-34. DOI: 10.1016/j.reactfunctpolym.2015.07.001 Kumar, V. (2018). Roll-to-roll Processing of Nanofiber into Coatings , Dissertation, Åbo Akademi University, ISBN 978-952-12-3672-0. Kuusipalo, J., Savolainen, A., Laiho, E., and Penttinen, T. (2008). “E xtrusion coating and products,” Papermaking Science and Technology , Book 12, pp. 106-166. Lackner, M. (2015). “ Bioplastics - Biobased plastics as renewable and/or biodegradable alternatives to petroplastics, ” in: Kirk-Othmer Encyclopedia of Chemical Technology , 6 th edition, Kirk Othmer, Wiley. Lagarón, J. M., and Fendler, A. (2009). “High water barrier nanobiocomposites of methyl cellulose and chitosan for film and coating applications,” Journal of Plastic Film and Sheeting 25(1), 47-59. DOI: 10.1177/8756087909335712 Laine, C., Harlin, A., Hartman, J., Hyvärinen, S., Kammiovirta, K., Krogerus, B., Pajari, H., Rautkoski, H., Setälä, H., Sievänen, J., and Uotila, J. (2013). “ Hydroxyalkylated xylans – Their synthesis and application in coatings for packaging an d paper,” Industrial Crops and Products 44, 692-704. DOI: 10.1016/j.indcrop.2012.08.033 Larsson, M., Johnsson, A., Gårdebjer, S., Bordes, R., and Larsson, A. (2017). “ Swelling and mass transport properties of nanocellulose- HPMC composite films,” Materials and Design 122, 414-421. DOI: 10.1016/j.matdes.2017.03.011 Lavoine, N., Desloges, I., Dufresne, A., and Bras, J. (2012). “ Microfibrillated cellulose – Its barrier properties and applications in cellulosic materials: A review,” Carbohydrate Polymers 90(2), 735-764. DOI: 10.1016/j.carbpol.2012.05.026 Leminen, V., Kainusalmi, M., Tanninen, P., Lindell, H., Varis, J., Ovaska, S-S., Backfolk, K., Pitkänen, M., Sipiläinen-Malm, T., Hartman, J., Rusko, E., Hakola, L., Ihalainen, P., Määttänen, A., Sarfraz, J., and Peltonen, J. (2013). “ Aspects on pa ckaging safety and biomaterials,” in: 26th IAPRI Symposium on Packaging, Espoo, Finland, Jun (10-13).

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Helanto et al. (2019). “ Bio-based barriers ,” B io R esources 14(2), Pg #s to be added.

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