PAPERmaking! Vol5 Nr2 2019

bioresources. com

PEER-REVIEWED REVIEW ARTICLE

Boonprasith, P., Wootthikanokkhan, J., and Nimitsiriwat, N. (2013). “ Mechanical, thermal, and barrier properties of nanocomposites based on poly (butylene succinate)/thermoplastic starch blends con taining different types of clay,” Journal of Applied Polymer Science 130(2), 1114-1123. DOI: 10.1002/app.39281 Brienzo, M., Carvalho, A. F. A., de Figueiredo, F. C., and de Oliva Neto, P. (2016). “ Sugarcane bagasse hemicellulose properties, extraction technologies, and xylooligosaccharides produc tion,” Food Waste: Practices, Management and Challenges, Nova Science Publishers, New York, 155-188. Brydson, J. A. (1999). Plastic Materials , 7 th edition, Butterworth-Heinemann, Oxford, UK. Bugnicourt, E., Cinelli, P., Lazzeri, A., and Alvarez, V. A. (2014). “ Polyhydroxyalkanoate (PHA): Review of synthesis, characteristics, processing and potential applications in packaging , ” Budapest University of Technology and Economics, Express Polymer Letters, 8(11), 6-2014, 791-808. Burk, M. J. (2010). “ Sustainable production of i ndustrial chemicals from sugars,” International Sugar Journal 112(1333), 30. Burton, J. O. and Rasch, R.H. (1931). “ The determination of the alpha-cellulose content and paper number of copper,” U.S. National Bureau of Standards 6(4), 603-619. DOI: 10.6028/jres.006.037 CEN. (2017). Bio-based products , The European Committee for Standardization, (https://www.cen.eu/work/areas/chemical/biobased/Pages/default.aspx). Charlon, S., Marais, S., Dargent, E., Soulestin, J., Sclavons, M., and Follain, N. (2015). “ Structure – barrier property relationship of biodegradable poly (butylene succinate) and poly [(butylene succinate)-co-(butylene adipate)] nanocomposites: influence of the rigid amorphous fraction,” Physical Chemistry Chemical Physics , 17(44), 29918- 29934. DOI: 10.1039/C5CP04969E Chen, G., Qi, X. M., Guan, Y., Peng, F., Yao, C. L., and Sun, R. C. (2016). “High strength hemicellulose- based nanocomposite film for food packaging applications,” ACS Sustainable Chemistry and Engineering 4(4), 1985-1993. DOI: 10.1021/acssuschemeng.5b01252 Chen, G. Q. (2010). Industrial production of PHA , Plastics from bacteria. Springer, Berlin, Heidelberg, 121-132. Chen, G., and Yoon, J. S. (2005). “ Nanocomposites of poly [(butylene succinate) Ǧ co Ǧ (butylene adipate)](PBSA) and twice Ǧ functionalized organoclay,” Polymer International 54(6), 939-945. DOI: 10.1002/pi.1793 Chung, Y. L., Olsson, J. V., Li, R. J., Frank, C. W., Waymouth, R. M., Billington, S. L., and Sattely, E. S. (2013). “ A renewable lignin – lactide copolymer and application in biobased composites,” ACS Sustainable Chemistry and Engineering 1(10), 1231- 1238. DOI: 10.1021/sc4000835 Coma, V., Sebti, I., Pardon, P., Deschamps, A., and Pichavant, F. H. (2001). “ Antimicrobial edible packaging based on cellulosic ethers, fatty acids, and nisin incorporation to inhibit Listeria innocua and Staphylococcus aureus ,” Journal of Food Protection , 64(4), 470-475. DOI: 10.4315/0362-028X-64.4.470 De Assis, C. A., Celeste Iglesias, M., Bilodeau, M., Johnson, D., Phillips, R., Soledad Peresin, M., Bilek, T., Rojas, O. J., Venditti, R., and Gonzalez, R. (2018). “Cellulose micro- and nanofibrils (CMNF) manufacturing – financial and risk assessment,” Biofuels, Bioproducts and Biorefining 12, 251-264. DOI: 10.1002/bbb.1835

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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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