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[105600] Artykuł:
Effect of the biofuel and injection timing on emission of Diesel engine DI
(WPŁYW BIOPALIWA I KĄTA WYPRZEDZENIA WTRYSKU NA EMISJĘ SPALIN SILNIKA O ZAPŁONIE SAMOCZYNNYM) Czasopismo: 2020 XII International Science-Technical Conference AUTOMOTIVE SAFETY, Kielce, 2020, IEEE Strony: 1-7 Opublikowano: 2020
Autorzy / Redaktorzy / Twórcy
Imię i nazwisko
Wydział
Katedra
Do oświadczenianr 3
Grupaprzynależności
Dyscyplinanaukowa
Procent udziału
Liczba punktów do oceny pracownika
Liczba punktów wg kryteriów ewaluacji
Piotr Łagowski
WMiBM
Katedra Pojazdów Samochodowych i Transportu*
Nie
zaliczony do "N"
Inżynieria mechaniczna
100
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Grupa MNiSW: Materiały z konferencji międzynarodowej (zarejestrowane w Web of Science) Punkty MNiSW: 0
1. A. Ambrozik, T. Ambrozik and P. Łagowski, " Fuel impact on emissions of harmful components of the exhaust gas from the CI engine during cold start-up," Eksploatacja i Niezawodność - Maintenance and Reliability 2015, 17, 1, pp. 95-99. 2. J. Merkisz, J. Pielecha and J. Radzimirski, "New Trends in Emission Control in the European Union," 2014, New York: Springer. 3. R. Nadolski, K. Ludwinek, J. Staszak, M. Jaśkiewicz,"Utilization of BLDC motor in electrical vehicles," Electrotechnical Survey, Vol.: 88, Issue: 4a, (2012) 180-186, ISSN 0033-2097. 4. M. Matuszak, M. Jaśkiewicz, K. Ludwinek, Z. Gawęcki, "Special characteristics of reliability for serial mechatronic systems," Selected Problems of Electrical Engineering and Electronics WZEE’2015, IEEE, 345 E 47TH ST, NEW YORK, NY 10017 USA, 17-19.10.2015, Kielce, Poland. 5. J. Staszak, K. Ludwinek, Z. Gawęcki, J. Kurkiewicz, T. Bekier, M. Jaśkiewicz, "Utilization of permanent magnet synchronous motors in industrial robots," 2015 International Conference on Information and Digital Technologies (idt), IEEE, 345 E 47TH ST, NEW YORK, NY 10017 USA, 7-9.07.2015, Žilina, Slovakia. 6. A. Zuska, D. Więckowski, D. Frej, "A Comparative Study of Vehicle Absorbers," 2018 XI International Science-Technical Conference Automotive Safety, Casta, Slovakia 2018, ISBN: 978-1-5386-4578-9, WOS:000435296000056. https://doi.org/10.1109/AUTOSAFE.2018.8373 350 7. D. Ambarish, P. Samiddhat and K. M. Bijan,"An experimental study on the performance and emission characteristics of a CI engine fuelled with Jatropha biodiesel and its blends with diesel," Journal of Mechanical Science and Technology 2014, 28(5), pp. 1961-1966. 8. X. Jinlin, T. E. Grift and A. C. Hansen,"Effect of biodiesel on engine performances and emissions," Renewable and Sustainable Energy Reviews 2011, 15, pp. 1098–1116. 9. P. Baltrėnas, D. Paliulis and R. Vaiškūnaitė, "Experimental Investigations and Evaluation of Pollutant Emissions into Ambient Air by Rolling Stock Engines," Polish Journal of Environmental Studies 2014, 23, 3, pp. 673-680. 10. K. Varatharajan and M. Cheralathan,"Influence of fuel properties and composition on NOX emissions from biodiesel powered diesel engines: A review," Renewable and Sustainable Energy Reviews 2012, 16, pp. 3702– 3710. 11. G. Martínez, N. Sánchez, J. M. Encinar and J. F. González," Fuel properties of biodiesel from vegetable oils and oil mixtures. Influence of methyl esters distribution, Biomass and Bioenergy 2014, 63, pp. 22-32. 12. Hwai Chyuan Ong, H. H., T. M. I. Masjuki, A. S. Mahlia, W. T. Silitonga, Chong and T. Yusaf," Engine performance and emissions using Jatropha curcas, Ceiba pentandra and Calophyllum inophyllum biodiesel in a CI diesel engine," Energy 2014, 69, pp. 427-445. 13. P. Kruczyński, P. Orliński, W. Kamela [et al.],"Analysis of selected toxic components in the exhaust gases of a CI engine supplied with water-fuel emulsion," Polish Journal of Environmental Studies, vol. 27, nr 1, 2018, pp. 129-136, DOI:10.15244/pjoes/74689 14. S. W. Kruczyński, P. Orliński, K. Biernat,"Camelina oil as a biofuel for diesel engines," Przemysł Chemiczny, vol. 91, 2012, pp. 111-114 15. G. Tüccar, E. Tosun, T. Özgür and K. Aydın,"Diesel engine emissions and performance from blends of citrus sinensis biodiesel and diesel fuel," Fuel 2014, 132, pp. 7–11. 16. L. Labecki, A. Cairns, J. Xia, A. Megaritis, H. Zhao and L. C. Ganippa, "Combustion and emission of rapeseed oil blends in diesel engine," Applied Energy 2012, 95, pp. 139–146. 17. S. Kruczyński, P. Orliński, and K. Biernat, "Olej lniankowy jako biopaliwo dla silników o zapłonie samoczynnym," Przemysł Chemiczny 2012, 91/1/2012, pp. 111-114. 18. S. Kruczyński, P. Orliński, "Combustion of methyl esters of various origins in the agricultural engine," Indian Journal of Engineering and Materials Sciences 2013, 20, pp. 483-491. 19. M. S. Shehata, " Emissions, performance and cylinder pressure of diesel engine fuelled by biodiesel fuel," Fuel 2013, 112, pp. 513–522. 20. A. Rehman, R. K. Pandey, S. Dixit and R. M. Sarviya, "Performance and Emission Evaluation of Diesel Engine Fueled with Vegetable Oil," International Journal of Environmental Research 2009, 3(3), pp. 463-470. 21. R. Vallinayagam, S. Vedharaj, W. M. Yang, C. G. Saravanan, P. S. Lee, K. J. E. Chua, and S. K. Chou, "Impact of pine oil biofuel fumigation on gaseous emissions from a diesel engine, "Fuel Processing Technology 2014, 124 , pp. 44–53. 22. M. K. Wojs, P. Orliński, W. Kamela [et al.], "Research on the influence of ozone dissolved in the fuel-water emulsion on the parameters of the CI engine," IOP Conference Series: Materials Science and Engineering, nr 148, 2016, ss. 1-8, DOI:10.1088/1757-899X/148/1/012089 23. W. Lotko, A. Hernik, J. Stobiecki, T. Kosmanis, M. Gorska, "Smoke emission ofAD3.152 engine fuelled with rapeseed oil/diethyl ether blends," The Archives of Automotive Engineering – Archiwum Motoryzacji. 2018 80(2): 65-76. http://dx.doi.org/10.14669/AM. VOL80.ART5 24. Z. Chłopek., S. Jagiełło, S. Juwa, D. Zakrzewska, "Examination of the combustion process in a compression ignition engine fuelled with diesel oil and rape methyl esters," The Archives of Automotive Engineering – Archiwum Motoryzacji. 2017 76(2): 17-35, http://dx.doi.org/ 10.14669.VOL.76.ART1 25. D. Kurczyński, P. Łagowski, "Performance indices of a common rail-system CI engine powered by diesel oil and biofuel blends," Journal of the Energy Institute 2019 92:1897–1913. https://doi.org/10.1016/j.joei .2018.11.004. 26. B. Kegl, "Effects of biodiesel on emissions of a bus diesel engine," Bioresource Technology 2008, 99, pp. 863–873. 27. L. Labecki, L. C. Ganippa, "Effects of injection parameters and EGR on combustion and emission characteristics of rapeseed oil and its blends in diesel engines," Fuel 2012, 98, pp. 15–28. 28. G. Wcisło, "Determining Energy Value of Biodiesel FAME," Materiały z Konferencji PTNSS Kongres – 2005, Combustion Engines, pp. 93. 29. Wcisło G., Analiza wpływu odmian rzepaku na własności biopaliw RME oraz parametry pracy silnika o zapłonie samoczynnym, wydawnictwo FALL, Kraków 2013. 30. S. Saravanan, G. Nagarajan, G. Lakshmi Narayana Rao, S. Sampath, "Theoretical and experimental investigation on effect of injection timing on NOX emission of biodiesel blend," Energy 2014, 66, pp. 216-221.