|
|
|
|
Thermal Science 2008, vol. 12, br. 2, str. 159-169
|
|
Technical aspects of biodiesel production from vegetable oils
(naslov ne postoji na srpskom)
aAnnai Teresa College of Engineering, Villupuram District, Tamil Nadu, India bSri Manakula Vinayagar Engineering College, Puducherry state, India cDepartment of Chemical Engineering, Annai Teresa College of Engineering, Villupuram District, Tamil Nadu, India
e-adresa: jksujatha_2007@yahoomail.com
Sažetak(ne postoji na srpskom) Biodiesel, a promising substitute as an alternative fuel has gained significant attention due to the finite nature of fossil energy sources and does not produce sulfur oxides and minimize the soot particulate in comparison with the existing one from petroleum diesel. The utilization of liquid fuels such as biodiesel produced from vegetable oil by transesterification process represents one of the most promising options for the use of conventional fossil fuels. In the first step of this experimental research, edible rice bran oil used as test material and converted into methyl ester and non-edible jatropha vegetable oil is converted into jatropha oil methyl ester, which are known as biodiesel and they are prepared in the presence of homogeneous acid catalyst and optimized their operating parameters like reaction temperature, quantity of alcohol and the catalyst requirement, stirring rate and time of esterification. In the second step, the physical properties such as density, flash point, kinematic viscosity, cloud point, and pour point were found out for the above vegetable oils and their methyl esters. The same characteristics study was also carried out for the diesel fuel for obtaining the baseline data for analysis. The values obtained from the rice bran oil methyl ester and jatropha oil methyl ester are closely matched with the values of conventional diesel and it can be used in the existing diesel engine without any hardware modification. In the third step the storage characteristics of biodiesel are also studied.
Ključne reči
|
|
|
|
Reference
|
|
 6
|
Barnwal, B.K., Sharma, M.P. (2005) Prospects of biodiesel production from vegetable oils in India. Renewable and Sustainable Energy Reviews, 9(4): 363
|
|
 1
|
da Silva, N.F., Prata, S.A., Teixeira, R.J. (2003) Technical feasibility assessment of oleic sunflower methyl ester utilisation in Diesel bus engines. Energy Conversion and Management, 44(18): 2857
|
|
  3
|
Demirbas, A. (2003) Biodiesel fuels from vegetable oils via catalytic and non-catalytic supercritical alcohol transesterifications and other methods: A survey. Energy Conversion and Management, 44, 2093-2109
|
|

|
Dorado, M.P., i dr. (2004) Optimization of alkali catalized transesterifaction of brassica carinata oil for biodiesel production. Energy and Fuels, 18(1): 77
|
|
 10
|
Freedman, B., Pryde, E.H., Mounts, T.L. (1984) Variables affecting the yields of fatty esters from transesterified vegetable oils. JAOCS, 61, 1638-1643
|
|

|
Hass, M.J., Scott, K.M., Marmer, W.N., Foliga, T.A. (2004) In situ alkaline transesterification: An effective method for the production of fatty acid esters from vegetable oils. Journal of the American Oil Chemists Society, 81(1): 83
|
|

|
Igwe, I.O. (2004) The effects of temperature on the viscosity of vegetable oils in solution. Industrial Crops and Products, 19(2): 185
|
|
|
Krishnakumar, J., Venkatachalapathy, V.S.K. (2007) Comparative analysis of mineral diesel, vegetable oil and their blends. u: National Conference Organized by the Department of Mechanical Engineering, Proceedings, Coimbatore, India: Kumaraguru College of Technology, Vol 1
|
|
 12
|
Ma, F., Hanna, M.A. (1999) Biodiesel production: A review. Bioresour Technol, 70, 1-15
|
|
|
Meher, L.C., Sagar, D.V., Naik, S.N. (2004) Technical aspects of biodiesel production by transesterification a review, renewable and sustainable. Enery Review, 20, str. 1-21
|
|
8
|
Morrison, R.T., Boyd, R.N. (2005) Organic chemistry. Englewood Cliffs, New Jersey: Prentice Hall of India pvt. Ltd
|
|
|
Ryan III,T., Dodge, L.G., Callahan, T.J. (1984) The effects of vegetable oil properties on injection and combustion in two different diesel engines. J. Am. Oil Chem. Soc, 61,10, pp. 1610-1619
|
|
|
Tewari, K.S., Mehrrota, S.N., Vishnoi, N.K. (1985) Text book of organic chemistry. New Delhi, India: Vikas Publishing House Pvt. Ltd, str. 585-609
|
|
   4
|
Zhang, Y., Dube, M.A., McLean, D.D., Kates, M. (2003) Biodiesel production from waste cooking oil, 1: Process design and technological assessment. Bioresour Technol, 89(1): 1-16
|
|
|
|
|