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Tytuł artykułu

Biobutanol - produkcja i zastosowanie w silnikach Diesla

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Treść / Zawartość
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Warianty tytułu
EN
Biobutanol - production and application in diesel engines
Języki publikacji
PL
Abstrakty
PL
W artykule zaprezentowano przegląd współczesnych kierunków rozwoju technologii produkcji biobutanolu w procesach fermentacyjnych oraz możliwości zastosowania n-butanolu jako komponentu paliw stosowanych do zasilania silników Diesla. Omówiono problemy związane z uzyskaniem odpowiedniej wydajności procesów fermentacyjnych w kierunku biobutanolu oraz sposoby ich rozwiązywania. Dokonano analizy właściwości fizykochemicznych n-butanolu, pod kątem jego zastosowania w mieszankach paliw stosowanych w silnikach o zapłonie samoczynnym oraz zestawiono je z wynikami dostępnych prac badawczych.
EN
The article presents a review of contemporary directions of development of biobutanol fermentation processes production technologies and the application possibilities of n-butanol as a component of fuel used to feed diesel engines. The problems concerning obtaining the required yield of biobutanol in fermentation processes were discussed as well as resolution methods. An analysis of physical and chemical properties of n-butanol in terms of its use in blends of fuels used in diesel engines in comparison with the available results of research was conducted.
Słowa kluczowe
Czasopismo
Rocznik
Strony
549--556
Opis fizyczny
Bibliogr. 31 poz., 1 tabl.
Twórcy
  • Przemysłowy Instytut Motoryzacji, Warszawa
Bibliografia
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  • 6. Dürre P.: Biobutanol: An Attractive Biofuel. Biotechnology Journal 2007, 2, 12, 1525-534.
  • 7. Lee S.Y., Park J.H., Jang S.H., Nielsen L.K., Kim J., Jung K.S.: Fermentative butanol production by Clostridia. Biotechnology and Bioengineering 2008, 101, 209-28.
  • 8. Zheng Y.N., Li L.Z., Xian M., Ma Y.J.: Problems with the microbial production of butanol. Journal of Industrial Microbiology and Biotechnology 2009, 36, 1127-1138.
  • 9. He H., Lui H., Gan Y.R.: Genetic modification of critical enzymes and involved genes in butanol biosynthesis from biomass. Biotechnology Advances 2010, 471, 1.
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  • 11. Steen E.J., Chan Nilu R., Myers P.R., Petzold C.J., Redding A., Ouellet M., Keasling J.D.: Metabolic engineering of Saccharomyces cerevisiae for the production of n-butanol. Microbial Cell Factories 2008, 7, 36.
  • 12. Chukwuemeka Ezeji T., Qureshi N., Blaschek H.P.: Bioproduction of butanol from biomass: from genes to bioreactors. Current Opinion in Biotechnology 2007, 18, 220-227.
  • 13. Sung Ho Ha, Ngoc Lan Mai, Yoon-Mo Koo: Butanol recovery from aqueous solution into ionic liquids by liquid-liquid. Process Biochemistry 2010, 45, 1899-1903.
  • 14. Ezeji T.C., Karcher P.M., Qureshi N., Blaschek H.P.: Improving performance of a gas stripping-based recovery system to remove butanol from Clostridium beijerinckii fermentation. Bioprocess and Biosystems Engineering 2005, 27, 207-214.
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  • 16. Huang J., Meagher M.M.: Pervaporative recovery of n-butanol from aqueous solutions and ABE fermentation broth using thin-film silicalite-filled silicone composite membranes. Journal of Membrane Science 2001, 192, 231-242.
  • 17. Jitesh K., Pangarkar VG., Niranjan K.: Pervaporative stripping of acetone, butanol and ethanol to improve ABE Fermentation. Bioseparation 2000, 9, 145-154.
  • 18. Qureshi N., Meagher M.M., Huang J., Hutkins R.W.: Acetone butanol ethanol (ABE) recovery by pervaporation using silicalite-silicone composite membrane from fed-batch reactor of Clostridium acetobutylicum. Journal of Membrane Science 2001, 187, 93-102.
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  • 20. Garcia A., Lannotti E.L., Fischer J.L.: Butanol fermentation liquor production and separation by reverse osmosis. Biotechnology Bioengeneering 1986, 28, 785-791.
  • 21. Crabbe E., Nolasco-Hipolito C., Kobayashi G., Sonomoto K., Ishizaki A.: Biodiesel production of crude palm oil and evaluation of butanol extraction and fuel properties. Process Biochemistry 2001, 37, 65-71.
  • 22. Taconi K.A., Venkataramanan K.P., Johnson D.T.: Growth and solvent production by Clostridium pasteurianum (ATCC, 6013) utilizing biodiesel-derived crude glycerol as the sole carbon source. AIChE, Environ Prog Sustain Energy 2009, 28, 100-110.
  • 23. http://www.greenbiologics.com (31.03.2011).
  • 24. Gevo launches biobutanol plant. Focus Catalysts Volume: 2010, Issue 3, March 2010.
  • 25. Miers SA, McConnell S., Wallner T., Ng H.K., Carlson R.W., LeFeber J.: Drive Cycle Analysis of Butanol/Diesel Blends In a Light-Duty Vehicle 2008. SAE 2008-01-2301.
  • 26. Rakopoulos C.D., Rakopoulos R.G., Papagiannakis D.C., Kyritsis D.C.: Combustion heat release analysis of ethanol or n-butanol diesel fuel blends. Fuel 2011,90, 1855-1867.
  • 27. Lujaji F., Kristóf L., Bereczky A., Mbarawa M.: Experimental investigation of fuel properties, engine performance, combustion and emissions of blends containing croton oil, butanol, and diesel on a CI engine. Fuel 2011, 90, 505-510.
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  • 31. TCE (formerly The Chemical Engineer) Mar 2010, 825, 36-39.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPP2-0012-0006
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