References
[1]. Ali, Y., and Hanna, M.A. (1994). “Alternative Diesel
Fuels From Vegetable Oils”. Bioresour. Technol., Vol. 50,
No. 2, pp. 153-163.
[2]. Berchmans, H.J., and Hirata, S. (2008). “Biodiesel
Production from crude Jatropha Curcas L. seed oil with a
high content of free fatty acid”. Bioresour. Technol., Vol.
99, No. 6, pp. 1716-1721.
[3]. Karmee, S.K., and Chadha, A. (2005). “Preparation of
Biodiesel from crude oil of Pongamia pinnata”. Bioresour.
Technol., Vol. 96, No. 13, pp. 1425-1429.
[4]. Alkabbashi, A.N., Alam, M.Z., Mirghani, M.E.S., and
Al-Fusaiel, A.M.A., (2009). “Biodiesel production from
Crude Palm oil by transesterification process”. Journal of
Applied Sciences, Vol. 9, No. 17, pp. 3166-3170.
[5]. Chiu, C.W., Scumacher, L.G., and Suppes, G.J.
(2004). “Impact of cold flow improvers on Soybean
biodiesel blend”. Biomass and Bioenergy, Vol. 27, No. 5,
pp. 485-491.
[6]. Gui, M.M., Lee, K.T., and Bhatia, S. (2008). “Feasibility
of edible oil vs. non edible oil vs. waste edible oil as
biodiesel feedstock”. Energy, Vol. 33, No. 11, pp. 1646-
1653.
[7]. Malhotra, R.K., and Sarin, R. (2004). “Bio-diesel for
energy security, environment protection and employment generation”. SAE Publication, Vol. 28.
[8]. Alnuami, W., Buthainah, A., Etti, C.J., Jassim, L.I., and
Gomes, G.A. (2014). “Evaluation of Different Materials for
Biodiesel Production”. Int. J. of Innovative Technol., and
Exploring Engineering, Vol. 3, No. 8, pp. 1-8.
[9]. Dunn, R.O. (2009). “Effects of minor constituents on
cold flow properties and performance of biodiesel”.
Progress in Energy and Combustion Science, Vol. 35, No.
6, pp. 481–489.
[10]. Dunn, R.O., and Bagby, M.O. (1995). “Lowtemperature
phase behavior of vegetable oil/co-solvent
blends as alternative diesel fuel”. J. Am. Oil Chem. Soc.,
Vol. 77, No. 12, pp. 1315-1323.
[11]. Sanjay B. (2013). “Non-Conventional Seed Oils as
Potential Feedstocks for future Biodiesel Industries: A Brief
Review”. Research J. of Chemical Sciences, Vol. 3, No. 5,
pp. 99-103.
[12]. Imahara, H., Minami, E., and Saka, S. (2006).
“Thermodynamic study on cloud point of biodiesel with its
fatty acid composition”. Fuel, Vol. 85, No. 12, pp. 1666-
1670.
[13]. Soriano, J.N., Migo, V.P., and Matsumura, M. (2006).
“Ozonised vegetable oil as pour point depressant for neat
biodiesel”. Fuel, Vol. 85, No. 1, pp. 25-31.
[14]. Wang, J., Cao, L., and Han, S. (2014). “Effect of
polymeric cold flow improvers on flow properties of
biodiesel from waste cooking oil”. Fuel, Vol. 117, pp.
876–881.
[15]. Chupka, G.M., Fouts, L., Lennon, J.A., Alleman, T.L.,
Daniels, D.A., and McCormick, R.L., (2014). “Saturated monoglyceride effects on low-temperature performance
of biodiesel blends”. Fuel Processing Techno., Vol. 118,
pp. 302-309.
[16]. Verma, P., Sharma, M.P., and Dwivedi, G. (2016).
“Evaluation and enhancement of cold flow properties of
palm oil and its biodiesel”. Energy Reports, Vol. 2, pp. 8-
13.
[17]. Sarin, R., Kumar, R., Srivastav, B., Puri, S.K., Tuli, D.K.,
Malhotra, R.K., and Kumar, A. (2009). “Biodiesel
surrogates: Achieving per formance demands”.
Bioresour. Technol., Vol. 100, No. 12, pp. 3022-3028.
[18]. Shrestha, D.S., Gerpen, J.V., and Thompson, J.
(2008). “Effectiveness of Cold Flow Additives on Various
Biodiesels, Diesel, and their Blends”. Transactions of the
ASABE, Vol. 51, No. 4, pp. 1365-1370.
[19]. Anwar, A., and Garforth, A. (2016). “Challenges and
opportunities of enhancing cold flow properties of
biodiesel via heterogeneous catalysis”. Fuel, Vol. 173, pp.
189-208.
[20]. Monirul, I.M., Kalam, M.A., Masjuki, H.H., Zulkifli,
N.W.M., Shahir, S.A., Mosarof, M.H., and Ruhul, A.M.,
(2017). “Influence of poly (methyl acrylate) additive on
cold flow properties of coconut biodiesel blends and
exhaust gas emissions”. Renewable Energy, Vol. 101, pp.
702-712.
[21]. Sarin, A., Arora, R., Singh, N.P., Sarin, R., Malhotra,
R.K., and Kundu, K. (2009). “Effect of blends of Palm-
Jatropha-Pongamia biodiesels on cloud point and pour
point”. Energy, Vol. 34, No. 11, pp. 2016-2021.