Validation of Optimal Conditions of the Functional Properties of Rubber Seed Oil-Derived Biodiesel
Abstract
Keywords
Full Text:
PDFReferences
A. Junaid, Y. Suzana, B. Awais, and N. M. K. Ruzaimah, "Study of fuel properties of rubber seed oil based biodiesel," Energy Conversion and Management, vol. 78, no. 2014, pp. 266-275, 2014.
R. D. Misra and M. S. Murthy, "Blending of additives with biodiesels to improve the cold flow properties, combustion and emmission performance in a compression ignition engine- A review.," Renewable and sustainable energy reviews, vol. 15, pp. 2413-2422, 2011.
A. Demirbas, "Progress and recent trends in biodiesel fuels," Energy Conversion and Management, vol. 2, 2009.
B. Moser and S. F. Vaughn, "Evaluation of alkyl esters from Camelina sativa oil as biodiesel and as blend components in ultra low-sulfur diesel fuel," Bioresources Technology, vol. 101, no. 2, pp. 646-653, 2009.
U. Rashid, H. A. Rahman, I. Hussain, M. Ibrahim, and M. S. Haider, "Muskmelon (Cucumis melo) seed oil: A potential non-food oil source for biodiesel production," Energy, vol. 36, no. 9, pp. 5632-5639, 2011.
S. Çaynak, F. Guru, A. Biçer, A. Keskin, and Y. Içingür, "Biodiesel production from Pomace oil and improvement of its properties with synthetic manganese additive," Fuel, vol. 88, no. 3, pp. 534-538, 2009.
L. C. Meher, D. V. Sagar, and S. N. Naik, "Technical Aspects of Biodiesel Production by Transesterification—A review," Renewable and sustainable energy reviews, vol. 10, no. 3, pp. 248-268, 2006.
U. Rashid, A. Junaid, Y. Robiah, I. Muhammad, M. Hassan, and M. S. Azhari, "Momordica charantia Seed Oil Methyl Esters: Kinetic Study and Fuel Properties," International Journal of Green Energy, vol. 2, 2013.
B. M. Abdullah and J. Salimon, "Physiochemical characteristics of Malaysian Rubber (Hevea brasiliensis) seed oil," European Journal of Science Resources, vol. 31, pp. 437-445, 2009.
A. S. Ramadhas, S. Jayaraj, and C. Muraleedharan, "Characterization and the effects of using rubber seed oil as fuel in the compression ignition engines," Renewable Energy, vol. 30, no. 5, pp. 795-803, 2005.
O. E. Ikwuagwu, I. C. Ononogbu, and O. U. Njoku, "Production of biodiesel using rubber seed oil," Industrial crop production, vol. 12, no. 1, pp. 57-62, 2000.
T. E. Odetoye, D. S. Ogunniyi, and G. A. Olatunji, "Improving Jatropha Curcas Linnaeus oil alkyd drying properties," Elsevier, 2011.
J. Salimon and B. M. Abdullah, "The thermal properties and solid fat content of Malaysian rubber seed oil," The Malaysian Journal of Analytical Sciences, vol. 13, no. 1, pp. 1-7, 2009.
Y. C. Sharma and B. Singh, "Development of biodiesel from karanja, a tree found in rural India," Fuel, vol. 87, p. 1740, 2008.
N. P. Singh, Singh D. K., H. Singh, and J. Kumar, Vegetables seed production technology. Lucknow: International Book Distributing Co., 2006.
C. F. Uzoh and D. O. Onukwuli, "Extraction, analysis and desaturation of gmelina seed oil using different soft computing approaches," South African journal of chemical engineering, vol. 22, pp. 6-16, 2016.
(2004). Biodiesel production technology.
Sai Bharadwaj, S. Madhu, S. Niju, K. M. S. B. Meera, and N. Anantharaman, "Biodiesel production from rubber seed oil using calcium oxide derived from eggshell as catalyst optimization and modeling studies," Green Process Synth, vol. 8, pp. 430-442, 2019.
E. Li and V. Rudolph, "Transesterification of vegetable oil to biodiesel over MgO functionalized mesoporous catalysts," Energy and fuel, vol. 22, no. 1, pp. 145-149, 2008.
Ghadge S. V. and R. H., "Biodiesel production from mahua (Madhuca indica) oil having high free fatty acids," Biomass and Bioenergy, vol. 28, no. 6, pp. 601-605, 2005.
E. U. Ikhuoria, F. E. Okieimen, E. O. Obazee, and T. Erhabor, "Synthesis and characterization of styrenated rubber seed oil alkyd," African Journal of Biotechnology, vol. 10, no. 10, pp. 1913-1918, 2011.
S. C. Paul, N. Yung, Q. D. Nguyen, and O. K. Brian, "Improving the low-temperature properties of biodiesel: Methods and consequences," Renewable Energy, vol. 35, pp. 1145-1151, 2010.
Y. C. Sharma, B. Singh, and S. N. Upadhyay, "Advancements in development and characterization of biodiesel: a review," Fuel, vol. 87, pp. 2355-2373, 2008.
M. Ulfah, Mulyazmi, Burmawi, E. Praputri, E. Sundari, and Firdaus, "Biodiesel production methods of rubber seed oil: a review " presented at the The 3rd International conference on Chemical Engineering Sciences and Applications, Banda- Aceh, Indonesia, 2018.
D. Darnoko and D. Cheryan, "Kinetics of palm oil transesterification in a batch reactor," Journal of the Americal Oil Chemist’ Society, vol. 77, no. 12, pp. 1263-1267, 2000.
E. I. Bello, A. O. Akinola, and T. J. Owoyemi, "Fuel and physicochemical properties of cashew (Anarcardium 1 occidentale) nut oil, its biodiesel and blends with diesel," British Journal of Applied Science and Technology, vol. 3, no. 4, pp. 1055-1069, 2012.
R. O. Ebewele, A. F. Iyaji, and F. K. Hymore, "Deacidification of high acidic rubber seed oil by re-esterification with glycerol," International Journal of the Physical Sciences, vol. 5, no. 6, pp. 841-846, 2010.
K. Gerhard, "Dependence of biodiesel fuel properties on the structure of fatty acid alkyl esters," fuel Processing technology, vol. 86, pp. 1059-1070, 2005
DOI (PDF): https://doi.org/10.20508/ijrer.v11i1.11600.g8137
Refbacks
- There are currently no refbacks.
Online ISSN: 1309-0127
Publisher: Gazi University
IJRER is cited in SCOPUS, EBSCO, WEB of SCIENCE (Clarivate Analytics);
IJRER has been cited in Emerging Sources Citation Index from 2016 in web of science.
WEB of SCIENCE in 2025;
h=35,
Average citation per item=6.59
Last three Years Impact Factor=(1947+1753+1586)/(146+201+78)=5286/425=12.43
Category Quartile:Q4