References
- United Nations Department of Economic and Social
Affairs, Population Division, World Population Prospects
2022: Summary of Results, UN DESA/POP/2022/TR/NO. 3,
New York, 2022.
- K. Silpa, Y. Lisa, B.T. Perinaz, V.W. Frank, What a Waste 2.0:
A Global Snapshot of Solid Waste Management to 2050.
Urban Development, World Bank, Washington, D.C., 2018.
- The Future of Life on Earth – Peak Oil, 18 août 2022, pp. 39–41.
Available at: www.peakoil.net
- I. Chapman, The end of Peak Oil? Why this topic is still relevant
despite recent denials, Energy Policy, 64 (2014) 93–101.
- D.B. Yacobucci, Alternative Fuels and Advanced Technology
Vehicles: Issues in Congress, DIANE Publishing, Washington,
2013.
- A. Demirbas, Progress and recent trends in biofuels, Prog.
Energy Combust. Sci., 33 (2007) 1–18.
- A.E. Atabani, A.S. Silitonga, I.A. Badruddin, T.M.I. Mahlia,
H.H. Masjuki, S. Mekhilef, A comprehensive review on biodiesel
as an alternative energy resource and its characteristics,
Renewable Sustainable Energy Rev., 16 (2012) 2070–2093.
- P. Shinoj, S.S. Raju, P.K. Joshi, India’s biofuels production
programme: need for prioritizing the alternative options,
Indian J. Agric. Sci., 81 (2011) 391–397.
- A.H. Hirani, N. Javed, M. Asif, S.K. Basu, A. Kumar, A Review
on First- and Second-Generation Biofuel Productions, A. Kumar,
S. Ogita, Y.Y. Yau, Eds., Biofuels: Greenhouse Gas Mitigation
and Global Warming, Springer, New Delhi, 2018, pp. 141–154.
doi: 10.1007/978-81-322-3763-1_8
- D. Ballerini, N. Alazard-Toux, les Biocarburants, États de lieux,
Perspectives et enjeux du développement, Institut Français du
Pétrole (IFP), Technip, France, 2006, p. 348.
- M.E. Günay, L. Türker, N. Alper Tapan, Significant parameters
and technological advancements in biodiesel production
systems, Fuel, 250 (2019) 27–41.
- T.A. Andrade, M. Errico, K.V. Christensen, Influence of the
reaction conditions on the enzyme catalyzed transesterification
of castor oil: a possible step in biodiesel production, Bioresour.
Technol., 243 (2017) 366–374.
- F. Ferella, G. Mazziotti Di Celso, I. De Michelis, V. Stanisci,
F. Vegliò, Optimization of the transesterification reaction in
biodiesel production, Fuel, 89 (2010) 36–42.
- T. Ahmad, M. Danish, P. Kale, B. Geremew, S.B. Adeloju,
M. Nizami, M. Ayoub, Optimization of process variables for
biodiesel production by transesterification of flaxseed oil and
produced biodiesel characterizations, Renewable Energy,
139 (2019) 1272–1280.
- S.A. Anand Kumar, G. Sakthinathan, R. Vignesh, J. Rajesh Banu,
A.H. Al-Muhtaseb, Optimized transesterification reaction for
efficient biodiesel production using Indian oil sardine fish as
feedstock, Fuel, 253 (2019) 921–929.
- K. Thakkar, S.S. Kachhwaha, P. Kodgire, Multi-response
optimization of transesterification reaction for biodiesel
production from castor oil assisted by hydrodynamic cavitation,
Fuel, 308 (2022) 121907, doi: 10.1016/j.fuel.2021.121907.
- S.K. Nayak, A.T. Hoang, B. Nayak, P.C. Mishra, Influence of
fish oil and waste cooking oil as post mixed binary biodiesel
blends on performance improvement and emission reduction
in diesel engine, Fuel, 289 (2021) 119948, doi: 10.1016/j.
fuel.2020.119948.
- Standard Test Method for Density of Semi-Solid and Solid
Asphalt Materials (Nickel Crucible Method), Normes
américaines ASTM, 2017, ASTM D3289-17.
- Standard Test Method for Kinematic Viscosity of Transparent
and Opaque Liquids (and Calculation of Dynamic Viscosity),
Normes américaines ASTM, 2021, ASTM D 445.
- Corps gras d’origines animale et végétale – Détermination de
l’indice d’acide et de l’acidité. Normes internationales ISO,
2020, ISO 660:2020.
- Standard Test Method for Heat of Combustion of Liquid
Hydrocarbon Fuels by Bomb Calorimeter, Normes américaines
ASTM, 2020, ASTM D 240.
- Corps gras d’origines animale et végétale – Détermination
de l’indice de peroxyde – Détermination avec point d’arrêt
iodométrique, Normes nationales et documents normatifs
nationaux, 2017, NF EN ISO 3960.
- Corps gras d’origines animale et végétale – Détermination
de l’indice de réfraction, Normes nationales et documents
normatifs nationaux, 2017, NF EN ISO 6320.
- Produits pétroliers – Point d’éclair en vase clos des lubrifiants
et des huiles combustibles, Normes nationales et documents
normatifs nationaux, 1986, NF T60-103.
- Produits pétroliers – Détermination du point de trouble, Normes
nationales et documents normatifs nationaux, ISO 3015:1992.
- Produits pétroliers – Détermination du point d’écoulement,
Normes nationales et documents normatifs nationaux, 1996,
NF T60-105.