References
453
10 Yadav, B., Pandey, A., Kumar, L.R., and Tyagi, R.D. (2019). Bioconversion of
waste (water)/residues to bioplastics – a circular bioeconomy approach. Biore-
source Technology 298: 122584.
11 Fadhil, A.B. and Ahmed, A.I. (2018). Production of mixed methyl/ethyl esters
from waste fish oil through transesterification with mixed methanol/ethanol
system. Chemical Engineering Communications 205: 1157–1166.
12 Amenorfenyo, D.K., Huang, X., Zhang, Y. et al. (2019). Microalgae brewery
wastewater treatment: potentials, benefits and the challenges. International
Journal of Environmental Research and Public Health 16: 1910.
13 Murphy, J.D., Drosg, B., Allen, E. et al. (2015). A perspective on algal biogas. IEA
Bioenergy: 5–35.
14 Demichelis, F., Fiore, S., Pleissner, D., and Venus, J. (2018). Technical and
economic assessment of food waste valorization through a biorefinery chain.
Renewable and Sustainable Energy Reviews 94 (June): 38–48.
15 Kawaguchi, H., Oginno, C., and Kondo, A. (2017). Microbial conversion of
biomass into bio-based polymers. Bioresource Technology 245: 1664–1673.
16 Choi, J.M., Han, S.S., and Kim, H.S. (2015). Industrial applications of enzyme
biocatalysis: current status and future aspects. Biotechnology Advances 33:
1443–1454.
17 De Bhowmick, G., Sarmah, A.K., and Sen, R. (2018). Lignocellulosic biorefinery
as a model for sustainable development of biofuels and value added products.
Bioresource Technology 247: 1144–1154.
18 Wu, M., and Xu, H. (2018). Consumptive Water Use in the Production of
Ethanol and Petroleum Gasoline—2018 Update. No. ANL/ESD/09-1 Rev. 2.
Argonne National Lab. (ANL), Argonne, IL, USA.
19 Bajwa, D.S., Peterson, T., Sharma, N. et al. (2018). A review of densified solid
biomass for energy production. Renewable and Sustainable Energy Reviews 96:
296–305.
20 D’Angelo, S.C., Dall’Ara, A., Mondelli, C. et al. (2018). Techno-economic anal-
ysis of a glycerol biorefinery. ACS Sustainable Chemistry & Engineering 6 (12):
16563–16572.
21 Ghisellini, P., Ripa, M., and Ulgiati, S. (2018). Exploring environmental and eco-
nomic costs and benefits of a circular economy approach to the construction
and demolition sector. A literature review. Journal of Cleaner Production 178:
618–643.
22 Pinheiro, C.T., Quina, M.J., and Gando-Ferreira, L.M. (2020). Management of
waste lubricant oil in Europe: a circular economy approach. Critical Reviews in
Environmental Science and Technology: 1–36. https://doi.org/10.1080/10643389
.2020.1771887.
23 Norton, M., Baldi, A., Buda, V. et al. (2019). Serious mismatches continue
between science and policy in forest bioenergy. GCB Bioenergy 11 (11):
1256–1263.
24 Preston, F., Lehne, J., and Wellesley, L. (2019). An Inclusive Circular Economy:
Priorities for Developing Countries, 1–80. Chatham House - The Royal Institute of
International Affairs.