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Articles

Biodiesel synthesis from vegetable oil using eggshell waste as a heterogeneous catalyst

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Pages 1083-1089 | Received 20 Sep 2018, Accepted 04 Jan 2019, Published online: 03 Apr 2019

References

  • Bozbas K. Biodiesel as an alternative motor fuel: production and policies in the European Union. Renew Sustain Energy Rev. 2008;12:542–552.
  • Amrani M. Producing biodiesel from yellow greases with high free fatty acids. Facta Univ Phys Chem Technol. 2007;5:61–67.
  • Anand M, Gobalakrishnan M, Maruthupandy M, et al. Biodiesel production from mixed crude oil of non-edible marine fishes. Energy Environ Focus. 2015;4:47–53.
  • Awad S, Paraschiv M, Tazerout M. Biodiesel elaboration from municipal fat wastes. Environ Eng Manage J. 2010;9:1347–1350.
  • Canakci M, Sanli H. Biodiesel production from various feedstocks and their effects on the fuel properties. J Ind Microbiol Biotechnol. 2008;35:431–441.
  • Canakci M, Van Gerpen J. Biodiesel production via acid catalysis. Trans ASAE. 1999;42:1203–1210.
  • Cheng Y, Lu Y, Gao C, et al. Alga-based biodiesel production and optimization using sugar cane as the feedstock. Energy Fuels. 2009;23:4166–4173.
  • Dave D, Ramakrishnan VV, Trenholm S, et al. Marine oils as potential feedstock for biodiesel production: physicochemical characterization. J Bioprocess Biotech. 2014;4:2.
  • de Almeida VF, García-Moreno PJ, Guadix A, et al. Biodiesel production from mixtures of waste fish oil, palm oil and waste frying oil: optimization of fuel properties. Fuel Process Technol. 2015;133:152–160.
  • Encinar J, Gonzalez J, Rodriguez J, et al. Biodiesel fuels from vegetable oils: transesterification of Cynara c ardunculus L. oils with ethanol. Energy Fuels. 2002;16:443–450.
  • Fadhil AB, Al-Tikrity ETB, Albadree MA. Transesterification of a novel feedstock, Cyprinus carpio fish oil: influence of co-solvent and characterization of biodiesel. Fuel. 2015;162:215–223.
  • Atadashi IM, Aroua MK, Abdul Aziz AR, et al. The effects of catalysts in biodiesel production: a review. J Indus Eng Chem. 2013;19:14–26.
  • Fjerbaek L, Christensen KV, Norddahl B. A review of the current state of biodiesel production using enzymatic transesterification. Biotechnol Bioeng. 2009;102:1298–1315.
  • Ma F, Hanna MA. Biodiesel production: a review. Bioresource Technol. 1999;70:1–15.
  • Narasimharao K, Lee A, Wilson K. Catalysts in production of biodiesel: a review. J Biobased Mater Bioenergy. 2007;1:19–30.
  • Gumba RE, Saallah S, Misson M, et al. Green biodiesel production: a review on feedstock, catalyst, monolithic reactor, and supercritical fluid technology. Biofuel Res J. 2016;3:431–447.
  • Arzamendi G, Arguiñarena E, Campo I, et al. Alkaline and alkaline-earth metals compounds as catalysts for the methanolysis of sunflower oil. Catalysis Today. 2008;133–135:305–313.
  • Kesic Z, Lukic I, Zdujic M, et al. Calcium oxide based catalysts for biodiesel production: a review. CI&CEQ. 2016;22:391–408.
  • Boey P-L, Maniam GP, Hamid SA. Biodiesel production via transesterification of palm olein using waste mud crab (Scylla serrata) shell as a heterogeneous catalyst. Bioresource Technol. 2009;100:6362–6368.
  • Boro J, Thakur AJ, Deka D. Solid oxide derived from waste shells of Turbonilla striatula as a renewable catalyst for biodiesel production. Fuel Process Technol. 2011;92:2061–2067.
  • Chakraborty R, Bepari S, Banerjee A. Application of calcined waste fish (Labeo rohita) scale as low-cost heterogeneous catalyst for biodiesel synthesis. Bioresour Technol. 2011;102:3610–3618.
  • Hu S, Wang Y, Han H. Utilization of waste freshwater mussel shell as an economic catalyst for biodiesel production. Biomass Bioenergy. 2011;35:3627–3635.
  • Obadiah A, Swaroopa GA, Kumar SV, et al. Biodiesel production from Palm oil using calcined waste animal bone as catalyst. Bioresource Technol. 2012;116:512–516.
  • Viriya-Empikul N, Krasae P, Puttasawat B, et al. Waste shells of mollusk and egg as biodiesel production catalysts. Bioresource Technol. 2010;101:3765–3767.
  • Xie J, Zheng X, Dong A, et al. Biont shell catalyst for biodiesel production. Green Chem. 2009;11:355–364.
  • Hamideh F, Akbar A. Application of eggshell wastes as valuable and utilizable products: a review. Res Agr Eng. 2018;64:104–114.
  • Knothe G. Determining the blend level of mixtures of biodiesel with conventional diesel fuel by fiber-optic near-infrared spectroscopy and 1H nuclear magnetic resonance spectroscopy. J Amer Oil Chem Soc. 2001;78:1025–1028.
  • Buasri A, Chaiyut N, Loryuenyong V, et al. Application of eggshell wastes as a heterogeneous catalyst for biodiesel production. Sustain Ener. 2013;1:7–13.
  • Navajas A, Issariyakul T, Arzamendi G, et al. Development of eggshell derived catalyst for transesterification of used cooking oil for biodiesel production. Asia-Pac J Chem Eng. 2013;8:742–748.
  • Saka S, Kusdiana D. Biodiesel fuel from rapeseed oil as prepared in supercritical methanol. Fuel. 2001;80:225–231.
  • Sree R, Seshu Babu N, Sai Prasad PS, et al. Transesterification of edible and non-edible oils over basic solid Mg/Zr catalysts. Fuel Process Technol. 2009;90:152–157.
  • Colombo K, Ender L, Barros AAC. The study of biodiesel production using CaO as a heterogeneous catalytic reaction. Egypt J Petrol. 2017;26:341–349.
  • Molaei Dehkordi A, Ghasemi M. Transesterification of waste cooking oil to biodiesel using Ca and Zr mixed oxides as heterogeneous base catalysts. Fuel Process Technol. 2012;97:45–51.
  • Liu X, He H, Wang Y, et al. Transesterification of soybean oil to biodiesel using CaO as a solid base catalyst. Fuel. 2008;87:216–221.
  • Xie W, Huang X, Li H. Soybean oil methyl esters preparation using NaX zeolites loaded with KOH as a heterogeneous catalyst. Bioresource Technol. 2007;98:936–939.
  • Soares IP, Rezende TF, Silva RC, et al. Multivariate calibration by variable selection for blends of raw soybean oil/biodiesel from different sources using Fourier transform infrared spectroscopy (FTIR) spectra data. Energy Fuels. 2008;22:2079–2083.
  • Guillen MD, Cabo N. Infrared spectroscopy in the study of edible oils and fats. J Sci Food Agric. 1997;75:1–11.
  • Deka DC, Basumatary S. High quality biodiesel from yellow oleander (Thevetia peruviana) seed oil. Biomass Bioenergy. 2011;35:1797–1803.
  • Li E, Rudolph V. Transesterification of vegetable oil to biodiesel over MgO-functionalized mesoporous catalysts. Energy Fuels. 2007;22:145–149.

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