532

34 Agri and Food Waste Valorization Through the Production of Biochemicals and Packaging Materials

References

1 FAO (2013). Food Wastage Footprint: Impacts on Natural Resources, Summary

Report. Rome Italy: FAO. ISBN: 978-92-5-107752-8.

2 Canali, M., Östergren, K., Amani, P. et al. (2014). FUSIONS. In: Drivers of

Current Food Waste Generation, Threats of Future Increase and Opportuni-

ties for Reduction (ed. M. Canali). . ISBN: 978-94-6257-354-3. http://www.eu-

fusions.org/index.php/download?download=111:drivers-of-current-food-waste-

generation-threats-of-future-increase-and-opportunities-for-reduction.

3 Avendano, V. (2009). Spanien. In: DENA, Exporthandbuch Biogasmarkt Interna-

tional, vol. 5, 39–71. Berlin: Deutsche Energie-Agentur.

4 Food and Agriculture Organization of the United Nations (FAO) (2016). The

State of Food and Agriculture. Climate Change, Agriculture and Food Security.

Rome Italy: FAO. ISBN: 978-92-5-109374-0.

5 Isah, S. and Ozbay, G. (2020). Valorization of food loss and wastes: feedstocks

for biofuels and valuable chemicals frontiers in sustainable food systems. Fron-

tiers in Sustainable Food Systems 4: 82. https://doi.org/10.3389/fsufs.2020.00082.

6 Corn, R.R., Fatemi, S., and Engelberth, A.S. (2018). Comparing end-use poten-

tial for industrial food-waste sources. Engineering 4: 371–380.

7 Lin, C.S.K., Koutinas, A.A., Stamatelatou, K. et al. (2014). Current and future

trends in food waste valorization for the production of chemicals, materials

and fuels: a global perspective. Biofuels, Bioproducts and Biorefining 8: 686–715.

https://doi.org/10.1002/bbb.1506.

8 Foley, J.A., Ramankutty, N., Brauman, K.A. et al. (2011). Solutions for a culti-

vated planet. Nature 478 (7369): 337–342. https://doi.org/10.1038/nature10452.

9 Lundqvist, J., de Fraiture, C., and Molden, D. (2008). Saving water: from field

to fork: curbing losses and wastage in the food chain. In: SIWI Policy Brief.

Stockholm, Sweden: SIWI.

10 Lee, S.H., Choi, K.I., Osako, M., and Dong, J.I. (2007). Evaluation of envi-

ronmental burdens caused by changes of food waste management systems in

Seoul, Korea. Science of the Total Environment 387: 42–53.

11 Garnett, T. (2011). Where are the best opportunities for reducing greenhouse

gas emissions in the food system (including the food chain)? Food Policy 36:

S23–S32.

12 WRAP. (2019). The Food Waste Reduction Road Map. Progress Report. The

Waste and Resources Action Programme, pp. 1–29. Available online at: https://

wrap.org.uk/resources/report/food-waste-reduction-roadmap-progress-report-

2019.

13 Hanson, C., Lipinski, B., Robertson, K. et al. (2016). Food Loss and Waste

Accounting and Reporting Standard. WRI. Retrieved at: https://www.wbcsd

.org/contentwbc/download/3969/53083

14 Papargyropoulou, E., Lozano, R., Steinberger, J.K. et al. (2014). The food waste

hierarchy as a framework for the management of food surplus and food waste.

Journal of Cleaner Production 76: 106–115.