Page 114 - Advances in Eco-Fuels for a Sustainable Environment
P. 114
Prospects of biodiesel feedstock as an effective ecofuel source and their challenges 87
[63] Koberg M, Gedanken A. Optimization of bio-diesel production from oils, cooking oils,
microalgae, and castor and jatropha seeds: probing various heating sources and catalysts.
Energy Environ Sci 2012;5(6):7460–9.
[64] Adriaans T. Suitability of solvent extraction for Jatropha curcas. Eindhoven: FACT Foun-
dation; 2006. p. 9.
[65] Rosenthal A, Pyle D, Niranjan K. Aqueous and enzymatic processes for edible oil extrac-
tion. Enzym Microb Technol 1996;19(6):402–20.
[66] Abdulkarim S, et al. Some physico-chemical properties of Moringa oleifera seed oil
extracted using solvent and aqueous enzymatic methods. Food Chem 2005;93(2):253–63.
[67] Sharma A, Gupta M. Ultrasonic pre-irradiation effect upon aqueous enzymatic oil
extraction from almond and apricot seeds. Ultrason Sonochem 2006;13(6):529–34.
[68] Chan KW, Ismail M. Supercritical carbon dioxide fluid extraction of Hibiscus cannabinus
L. seed oil: a potential solvent-free and high antioxidative edible oil. Food Chem 2009;114
(3):970–5.
[69] Guan W, et al. Comparison of essential oils of clove buds extracted with supercritical car-
bon dioxide and other three traditional extraction methods. Food Chem 2007;101
(4):1558–64.
[70] Nigam PS, Singh A. Production of liquid biofuels from renewable resources. Prog Energy
Combust Sci 2011;37(1):52–68.
[71] Atabani A, et al. A comparative evaluation of physical and chemical properties of biodie-
sel synthesized from edible and non-edible oils and study on the effect of biodiesel blend-
ing. Energy 2013;58:296–304.
[72] Leung DY, Wu X, Leung M. A review on biodiesel production using catalyzed trans-
esterification. Appl Energy 2010;87(4):1083–95.
[73] Al-Zuhair S. Production of biodiesel: possibilities and challenges. Biofuels Bioprod
Biorefin 2007;1(1):57–66.
[74] Turkay S, Civelekoglu H. Deacidification of sulfur olive oil. I. Single-stage liquid-liquid
extraction of miscella with ethyl alcohol. J Am Oil Chem Soc 1991;68(2):83–6.
[75] Zhang Y, et al. Study on the coupling process of catalytic esterification and extraction of
high acid value waste oil with methanol, In: International conference on biomass energy
technologies. Guangzhou, China; 2008.
[76] Motasemi F, Ani F. A review on microwave-assisted production of biodiesel. Renew Sust
Energ Rev 2012;16(7):4719–33.
[77] Kiss AA, et al. The heterogeneous advantage: biodiesel by catalytic reactive distillation.
Top Catal 2006;40(1–4):141–50.
[78] Noshadi I, Amin N, Parnas RS. Continuous production of biodiesel from waste cooking oil
in a reactive distillation column catalyzed by solid heteropolyacid: optimization using
response surface methodology (RSM). Fuel 2012;94:156–64.
[79] Dub e M, Tremblay A, Liu J. Biodiesel production using a membrane reactor. Bioresour
Technol 2007;98(3):639–47.
[80] Qiu Z, Zhao L, Weatherley L. Process intensification technologies in continuous biodiesel
production. Chem Eng Process Process Intensif 2010;49(4):323–30.