Thermal Engineering Department University of Life Science Lublin, Doswiadczalna 44 St., 20-280 Lublin, Poland
Bibliografia
1. Blumenthal M.M. 1991: „A new look at the chemistry and physics of deep-fat frying”, Food Technology, vol. 45, no. 2, 68-94.
2. Choe E. and Min D.B. 2006: „Mechanisms and factors for edible oil oxidation”, Comprehensive Reviews in Food Science and Food Safety, vol. 5, 169-186.
3. Cisek J., Mruk A. and Hlavna V. 2011: „The properties of a HDV diesel engine fuelled by crude rapeseed oil”, TEKA Kom. Mot. Energ. Roln. - OL PAN, vol. 11, 29-39.
4. Clark W.L. and Serbia G.W. 1991: „Safety aspects of frying fats and oils”, Food Technology, vol. 45, no. 2, 84-94.
5. Dayong J., Xuanjun W., Shuguang L. and Hejum G. 2011: „Rapeseed oil monoester of ethylene glycol monomethyl ether as a new biodiesel”, Journal of Biomedicine and Biotechnology, vol. 2011, 8 pages.
6. Hoffman M. 2004: „Dangerous transformations”, Przegląd Gastronomiczny, vol. 10, pp. 14-16.
7. Krelowska-Kulas M. 1993: „Determination of food products quality”, 63-90, PWE, Warszawa, Poland (in Polish).
8. Ledóchowska E. and Hazuka Z. 2006: „Thermooxidative transformations of chosen olive oils and rapeseed oil occurring during heating and frying”, Tłuszcze Jadalne, vol. 41, 193-196. (in Polish).
9. Maniak B., Szmigielski M., Piekarski W. and Markowska A. 2009: „Physochemical changes of post frying sunflower oil”, International Agrophysics, vol. 23, no. 3, 243-248.
10. De Oliveira M.F., Vieira A.T., Ferreira Batista A.C., De Souza Rodrigues H. and Stradiotto N.R. 2011: „A simple and fast method for the production an characterization of methylic and ethylic biodiesels from tucum oil via an alkaline route”, Journal of Biomedicine and Biotechnology, vol. 2011, 4 pages.
11. Paul S. and Mittal G.S. 1996: „Dynamics of fat/oil degradation during frying based on optical properties”, Journal of Food Engineering, vol.30, 389-403.
12. Piekarski W.: „Chosen properties of post-frying rape-seed oil as raw material for production of engine fuel components with regard to diverse assortment of fried dishes” in Biofuels and ecological greases.
13. W. Piekarski Ed. 2009: 41-51, Warszawa, Poland (in Polish).
14. PN-S-02005:1998, „Car engines -Test bench investigation, Determination of basic work parameters”, PKN, 1998 (in Polish).
15. PN-ISO 3960:1996, „Oils, plant and animal fats, Determination of peroxide number”, PKN, 1996 (in Polish).
16. PN-ISO 660:1998, „Oils, plant and animal fats, Determination of acidic number and acidity”, PKN, 1998 (in Polish).
17. BN-1374-03:1979, „Car engines -Test bench investigation, Preparation of characteristics”, PKN, 1998 (in Polish).
18. PN-A-86908:2000, „Oils, plant and animal fats, Refined plant oil”, PKN, 2000 (in Polish).
19. Sikorski Z.E. 2007: „Chemical reactions of fatty acids and acylglycerols” in Food Chemistry, Z.E. Sikorski, Ed., 112-140, WNT, Warszawa, Poland (in Polish).
20. Staat F. and Vallet B. 1994: „Vegetable oil methyl ester as a diesel substite”, Chemistry and Industry, vol. 7, 863-865.
21. Szmigielski M., Maniak B. and Piekarski W. 2008: „Evaluation of chosen quality parameters of used frying rape oil as fuel biocomponent”, Internationale Agrophysics , vol. 22, no. 4, 361-364.
22. Tys J., Piekarski W., Jackowska I., Kaczor A., Zając G. and Starobrat P. 2003: „Technological and economical determinants of production of rapeseed biofuels”, Acta Agrophysica, vol. 99, 1-162 (in Polish).
23. Wcisło G. 2010: „Utilization of used oils and fats for FAME biofuels production”, TEKA Kom. Mot. Energ. Roln. - OL PAN vol. 10, 509-516.
24. Zaharchuk V., Tkachuk V. and Zaharchuk O. 2011: „Estimation of biodiesel fuel on the basis of rape oil and isopropyl alcohol”, TEKA Kom. Mot. Energ. Roln. - OL PAN vol. 10, 450-456.