420
27 Bioconversion of Waste to Wealth as Circular Bioeconomy Approach
20 Rathore, P. and Sarmah, S.P. (2020). Economic, environmental and social
optimization of solid waste management in the context of circular economy.
Computers & Industrial Engineering 145: 106510.
21 Kapoor, R., Ghosh, P., Kumar, M. et al. (2020). Valorization of agricultural waste
for biogas based circular economy in India: a research outlook. Bioresource Tech-
nology 304: 123036.
22 Teigiserova, D.A., Hamelin, L., and Thomsen, M. (2020). Towards transparent
valorization of food surplus, waste and loss: clarifying definitions, food waste
hierarchy, and role in the circular economy. Science of the Total Environment 706:
136033.
23 Pfaltzgraff, L.A., Cooper, E.C., Budarin, V., and Clark, J.H. (2013). Food waste
biomass: a resource for high-value chemicals. Green Chemistry 15: 307–314.
24 Xiong, X., Yu, I.K.M., Tsang, D.C.W. et al. (2019). Value-added chemicals from
food supply chain wastes: state-of-the-art review and future prospects. Journal of
Chemical Engineering 375: 121983.
25 Kretschmer, B., Smith, C., Watkins, E. et al. (2013). Technology options for
feeding 10 billion people. In: Recycling Agricultural, Forestry and Food Wastes
and Residues for Sustainable Bioenergy and Biomaterials. Brussels: Science
and Technology Option Publications https://doi.org/10.2861/33176 ISBN
978-92-823-4734-8.
26 Scarlet, N., Dallemand, J.F., Monforti-Ferrario, F. et al. (2015). The role of
biomass and bioenergy in the future bioeconomy: policies and facts. Environment
and Development 15: 3–34.
27 McDermott, M.S., Oliver, M., venson, A. et al. (2015). The theory of planned
behaviour and discrete food choices: a systematic review and meta-analysis.
International Journal of Behavioural Nutrition and Physical Activity 12: 162.
28 Nicholson, A.L., Olivetti, E.A., Gregory, J.R., et al. (2009). End-of life LCA allo-
cation methods: open loop recycling impacts on robustness of material selection
decisions. IEEE International Symposium on Sustainable Systems and Technology,
2009, ISSST ’09. pp. 1–6.
29 Viaggi, D. (2016). Towards an economics of the bioeconomy: four years later.
Bio-based and Applied Economics 5 (2): 101–112.
30 Wesseler, J. and von Braun, J. (2017). Measuring the bioeconomy: economics and
policies. Annual Review of Resource Economics 9: 17.1–17.24.
31 Kuckertz, A. (2020). Bioeconomy transformation strategies worldwide require
stronger focus on entrepreneurship. Sustainability 12: 2911. https://doi.org/10
.3390/su12072911.
32 Aguilara, A. and Patermann, C. (2021). Biodiplomacy, the new frontier for bioe-
conomy. New Biotechnology 59: 20–25.
33 Calicioglu, O. and Bogdanski, A. (2021). Linking the bioeconomy to the 2030
sustainable development agenda: can SDG indicators be used to monitor progress
towards a sustainable bioeconomy? New Biotechnology 61: 40–49.
34 Sacchi, S., Lotti, M., and Branduardi, P. (2021). Education for a biobased econ-
omy: integrating life and social sciences in flexible short courses accessible from
different backgrounds. New Biotechnology 60: 72–75.