References

539

96 Bledzki, A.K. and Jaszkiewicz, A. (2010). Mechanical performance of bio com-

posites based on PLA and PHBV reinforced with natural fibres – a comparative

study to PP. Composites Science and Technology 70: 1687–1696.

97 Oksman, K., Skrifvars, M., and Selin, J.F. (2003). Natural fibres as reinforce-

ment in polylactic acid (PLA) composites. Composites Science and Technology

63: 1317–1324.

98 Lee, S.-H. and Wang, S. (2006). Biodegradable polymers/bamboo fiber biocom-

posite with bio-based coupling agent. Composites Part A Applied Science and

Manufacturing 37: 80–91.

99 Vea, E.B., Daina, R., and Marianne, T. (2018). Biowaste valorisation in a future

circular bioeconomy. Procedia CIRP 69: 591–596.

100 Arrieta, M.P., López, J., Ferrándiz, S. et al. (2013). Characterization of

PLA-limonene blends for food packaging applications. Polymer Testing 32:

760–768. https://doi.org/10.1016/j.polymertesting.2013.03.016.

101 Kumar, Y., Shukla, P., Singh, P. et al. (2014). Bio-plastics. A perfect tool for

eco-friendly food packaging: a review. Journal of Food Product Development and

Packaging 1: 1–6.

102 Anon (2016). Bio-based News. http://news.bio-based.eu/metalvuoto-introduces-

high-barrier-biobased-flexible-structures-to-support-the-long-shelf-life-pouch-

market (retrieved 30 September 2020).

103 Jacquel, N., Lo, C.-W., Wei, Y.-H. et al. (2008). Isolation and purification of bac-

terial poly(3-hydroxyalkanoates). Biochemical Engineering Journal 39 (1): 15–27.

https://doi.org/10.1016/j.bej.2007.11.029.

104 Steinbüchel, A. (2002). Biopolymers 10 Volumes with Index. Wiley-VCH. ISBN:

978-3-527-30290-1.

105 Chan, R.T., Garvey, C.J., Marcal, H. et al. (2011). Manipulation of polyhydroxy

butyrate properties through blending with ethyl-cellulose for a composite bio-

material. International Journal of Polymer Science: 651549. https://doi.org/10

.1155/2011/651549.

106 Anon (2017). PEPSICO. https://www.pepsico.com/news/press-release/danimer-

scientific-and-pepsico-to-collaborate-on-biodegradable-resins (retrieved 30

September 2020).

107 Pirayesh, H., Khazaeian, A., and Tabarsa, T. (2012). The potential for using

walnut (Juglans regia L.) shell as a raw material for wood-based particle board

manufacturing. Composites Part B Engineering 43: 3276–3280. https://doi.org/10

.1016/j.compositesb.2012.02.016.

108 Nanda, M.R., Misra, M., and Mohanty, A.K. (2013). Performance evaluation of

biofibers and their hybrids as reinforcements in bioplastic composites. Macro-

molecular Materials and Engineering 298: 779–788. https://doi.org/10.1002/

mame.201200112.

109 Valerio, O., Misra, M., and Mohanty, A.K. (2017). Sustainable bio based blends

of poly(lactic acid) (PLA) and poly(glycerol succinate-co-maleate) (PGSMA)

with balanced performance prepared by dynamic vulcanization. RSC Advances

7: 38594–38603.