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Year 2019, Volume: 14 Issue: 2, 26 - 31, 30.06.2019

Abstract

References

  • [1] Roy G.D., 2004. Non-Renewable Energy Sources, New Delhi: Khanna Publications.
  • [2] Kalam M.A., Husnawan M., and Masjuki H.H., 2003. Exhaust emission and combustion evaluation of coconut oil powered indirect injection diesel engine. Renewable Energy 28(15):2405-2415.
  • [3] Ramadhas A.S., Muraleedharan C., and Jayaraj S., 2005. Performance and emission evaluation of a diesel engine fueled with methyl esters of rubber seed oil. Renewable Energy 30:1789-1800.
  • [4] Balat, M., and Balat, H., 2010. Progress in biodiesel processing. Applied Energy 87: 1815- 1835.
  • [5] Sahoo P.K., Das L.M., Babu M.K., Arora P., Singh V.P., Kumar N.R. and Varyani T.S., 2009. Comparative evaluation of performance and emission characteristics of jatropha, karanja and polanga based biodiesel as fuel in a tractor engine. Fuel 88:1698-1707.
  • [6] Demirbas A. and M.F. Demirbas. 2011. Importance of algae oil as a source of biodiesel. Energy Conversion and Management 52:163-170.
  • [7] Lapuerta M. and O. Armas. 2008. Effect of biodiesel fuels on diesel engine emissions. Progress in Energy and Combustion Science 34:198-223.
  • [8] Narayana L., Gattamaneni R. and Subramani S., 2008. Combustion and emission characteristics of diesel engine fuelled with rice bran oil methyl ester and its diesel blends. Thermal Science 12:139-150.
  • [9] Knothe G., 2005. Dependence of biodiesel fuel properties on the structure of fatty acid alkyl esters. Fuel Processing Technology 86:1059-1070.
  • [10] Dunn R.O., 2005. Effect of antioxidants on the oxidative stability of methyl soyate (biodiesel). Fuel Processing Technology 86:1071-1085.
  • [11]. Demirbas, A. Biodiesel Impacts on Compression Ignition Engine (CIE): Analysis of Air Pollution Issues Relating to Exhaust Emissions; Energy Sources 2005, 27, 549-558.
  • [12]. Lue,Y.; Yeh, Y; Wu, C. The Emission Characteristics of a Small D.I. Diesel Engine Using Biodiesel Blended Fuels; J. Environ. Sci. Health 2001, A36(5),845-859.
  • [13]. Chen, K.; Lee, W.; Lin, Y.; Wu, T. A New Alternative Fuel for Reduction of Polycyclic Aromatic Hydrocarbon and Particulate Matter Emissions from Diesel Engines; Air & Waste Manage. Assoc. 2007, 57, 465-471.
  • [14]. Aulich, T.; DeWitt, M.; Corporan, E.; Larson, V.; Monroig, O.; Reich, R.; Seames, W. Impacts of Biodiesel on Pollutant Emissions of a JP-8-Fueled Turbine Engine; Air & Waste Manage. Assoc. 2005, 55, 940-949.
  • [15]. Harris, D. Exploring Chemical

The Effect of the Addition of Biodiesel in the Fossil Diesel to Its Characterizing Parameters

Year 2019, Volume: 14 Issue: 2, 26 - 31, 30.06.2019

Abstract

Nowadays it is clear that all the scientific
efforts are directed of finding the alternative resources for the fuels, in all
national and international levels of different countries, as well as in our country.
Due to its importance, there have been a lot of literature survey and are
established some experimental set-up to try profiting biodiesel using different
feedstocks usually form the wastes. As it can be understandable, there are a
lot of processes to reach the required quality of the biodiesel in order to be
ready to use for operation in internal combustion engines. One of the reasons
for this resistance is a certain lack of knowledge about the effect of biofuels
on engine emissions. This paper presents environmental and economic benefits
from the use of biodiesel, and the impact on the improvement of qualitative
indicators of the amount of biodiesel added to fossil diesel. The purpose is to
maintain constant engine performance, due to changes beginning with the
influence of the quantity of fuel to power motor, fuel consumption and thermal
efficiency. Which is the most important and what should be emphasized more in
this scenario, it is fact that the comparisons between environment biodiesel
emissions and fossil diesel. There are closely related come presence in the
burning gases the following material such as nitric oxides and particulate
matter, the latter not only in mass and composition, but also in size
distributions. 

References

  • [1] Roy G.D., 2004. Non-Renewable Energy Sources, New Delhi: Khanna Publications.
  • [2] Kalam M.A., Husnawan M., and Masjuki H.H., 2003. Exhaust emission and combustion evaluation of coconut oil powered indirect injection diesel engine. Renewable Energy 28(15):2405-2415.
  • [3] Ramadhas A.S., Muraleedharan C., and Jayaraj S., 2005. Performance and emission evaluation of a diesel engine fueled with methyl esters of rubber seed oil. Renewable Energy 30:1789-1800.
  • [4] Balat, M., and Balat, H., 2010. Progress in biodiesel processing. Applied Energy 87: 1815- 1835.
  • [5] Sahoo P.K., Das L.M., Babu M.K., Arora P., Singh V.P., Kumar N.R. and Varyani T.S., 2009. Comparative evaluation of performance and emission characteristics of jatropha, karanja and polanga based biodiesel as fuel in a tractor engine. Fuel 88:1698-1707.
  • [6] Demirbas A. and M.F. Demirbas. 2011. Importance of algae oil as a source of biodiesel. Energy Conversion and Management 52:163-170.
  • [7] Lapuerta M. and O. Armas. 2008. Effect of biodiesel fuels on diesel engine emissions. Progress in Energy and Combustion Science 34:198-223.
  • [8] Narayana L., Gattamaneni R. and Subramani S., 2008. Combustion and emission characteristics of diesel engine fuelled with rice bran oil methyl ester and its diesel blends. Thermal Science 12:139-150.
  • [9] Knothe G., 2005. Dependence of biodiesel fuel properties on the structure of fatty acid alkyl esters. Fuel Processing Technology 86:1059-1070.
  • [10] Dunn R.O., 2005. Effect of antioxidants on the oxidative stability of methyl soyate (biodiesel). Fuel Processing Technology 86:1071-1085.
  • [11]. Demirbas, A. Biodiesel Impacts on Compression Ignition Engine (CIE): Analysis of Air Pollution Issues Relating to Exhaust Emissions; Energy Sources 2005, 27, 549-558.
  • [12]. Lue,Y.; Yeh, Y; Wu, C. The Emission Characteristics of a Small D.I. Diesel Engine Using Biodiesel Blended Fuels; J. Environ. Sci. Health 2001, A36(5),845-859.
  • [13]. Chen, K.; Lee, W.; Lin, Y.; Wu, T. A New Alternative Fuel for Reduction of Polycyclic Aromatic Hydrocarbon and Particulate Matter Emissions from Diesel Engines; Air & Waste Manage. Assoc. 2007, 57, 465-471.
  • [14]. Aulich, T.; DeWitt, M.; Corporan, E.; Larson, V.; Monroig, O.; Reich, R.; Seames, W. Impacts of Biodiesel on Pollutant Emissions of a JP-8-Fueled Turbine Engine; Air & Waste Manage. Assoc. 2005, 55, 940-949.
  • [15]. Harris, D. Exploring Chemical
There are 15 citations in total.

Details

Primary Language English
Journal Section Articles
Authors

Florent Dobroshi

Mazrreku Armela This is me

Malollari Ilirjan This is me

Lorina Liçi This is me

Publication Date June 30, 2019
Acceptance Date July 11, 2019
Published in Issue Year 2019 Volume: 14 Issue: 2

Cite

APA Dobroshi, F., Armela, M., Ilirjan, M., Liçi, L. (2019). The Effect of the Addition of Biodiesel in the Fossil Diesel to Its Characterizing Parameters. Journal of International Environmental Application and Science, 14(2), 26-31.
AMA Dobroshi F, Armela M, Ilirjan M, Liçi L. The Effect of the Addition of Biodiesel in the Fossil Diesel to Its Characterizing Parameters. J. Int. Environmental Application & Science. June 2019;14(2):26-31.
Chicago Dobroshi, Florent, Mazrreku Armela, Malollari Ilirjan, and Lorina Liçi. “The Effect of the Addition of Biodiesel in the Fossil Diesel to Its Characterizing Parameters”. Journal of International Environmental Application and Science 14, no. 2 (June 2019): 26-31.
EndNote Dobroshi F, Armela M, Ilirjan M, Liçi L (June 1, 2019) The Effect of the Addition of Biodiesel in the Fossil Diesel to Its Characterizing Parameters. Journal of International Environmental Application and Science 14 2 26–31.
IEEE F. Dobroshi, M. Armela, M. Ilirjan, and L. Liçi, “The Effect of the Addition of Biodiesel in the Fossil Diesel to Its Characterizing Parameters”, J. Int. Environmental Application & Science, vol. 14, no. 2, pp. 26–31, 2019.
ISNAD Dobroshi, Florent et al. “The Effect of the Addition of Biodiesel in the Fossil Diesel to Its Characterizing Parameters”. Journal of International Environmental Application and Science 14/2 (June 2019), 26-31.
JAMA Dobroshi F, Armela M, Ilirjan M, Liçi L. The Effect of the Addition of Biodiesel in the Fossil Diesel to Its Characterizing Parameters. J. Int. Environmental Application & Science. 2019;14:26–31.
MLA Dobroshi, Florent et al. “The Effect of the Addition of Biodiesel in the Fossil Diesel to Its Characterizing Parameters”. Journal of International Environmental Application and Science, vol. 14, no. 2, 2019, pp. 26-31.
Vancouver Dobroshi F, Armela M, Ilirjan M, Liçi L. The Effect of the Addition of Biodiesel in the Fossil Diesel to Its Characterizing Parameters. J. Int. Environmental Application & Science. 2019;14(2):26-31.

“Journal of International Environmental Application and Science”