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Biogas is produced by the biological processes of anaerobic methane fermentation. It is a mixture of methane, carbon dioxide and trace amounts of other gases. By-products of the sugar industry are an efficient source of agricultural biogas. Sugar beet pulp and waste mass plant is characterized by a high content of dry matter and organic dry. The purpose of this article was to develop the economic analysis for biogas plant working at sugar factory and to show the energy balances and material and then calculated the main economic indicators such as Cash Flow (CF), Net Present Value (NPV), Internal Rate of Return (IRR) and Discounted Payback Period (DPP). It was found that the biogas plant operating at a sugar factory can be a profitable investment and DPP amounted to 8 years. However, these results are estimates and in reality they may changed.
Czasopismo
Rocznik
Tom
Strony
129--136
Opis fizyczny
Bibliogr. 14 poz.
Twórcy
autor
- Institute of Food Technology and Analysis, Faculty of Biotechnology and Food Sciences, Lodz University of Technology, Stefanowskiego 4/10, 90-924 Lodz, Poland
autor
- Institute of Food Technology and Analysis, Faculty of Biotechnology and Food Sciences, Lodz University of Technology, Stefanowskiego 4/10, 90-924 Lodz, Poland
autor
- Institute of Food Technology and Analysis, Faculty of Biotechnology and Food Sciences, Lodz University of Technology, Stefanowskiego 4/10, 90-924 Lodz, Poland
autor
- Institute of Food Technology and Analysis, Faculty of Biotechnology and Food Sciences, Lodz University of Technology, Stefanowskiego 4/10, 90-924 Lodz, Poland
autor
- Institute of Agricultural and Food Biotechnology prof. Wacław Dąbrowski, Department of Sugar, Inżynierska 4, 05-084 Leszno
Bibliografia
- 1.Czyżyk F, Strzelczyk M. Rational utilization of production residues generated in agri-food. Arch Waste Manag Environ Prot 2015, 17:99-106.
- 2.Spagnuolo M, Crecchio C, Pizzigallo M.D.R, Ruggiero P. Synergistic effects ofcellulolytic and pectinolytic enzymes in degrading sugar beet pulp. Bioresour Technol1997, 60:215-222.
- 3.Brooks L, Parravicini V, Svardal K, Kroiss H, Prendl L. Biogas from sugar beet presspulp as substitute of fossil fuel in sugar beet factories. Water Sci Technol 2008,58:1497-1504.
- 4.Demirel B, Scherer P. The roles of acetotrophic and hydrogenotrophic methanogensduring anaerobic conversion of biomass to methane: A review. Rev Environ SciBiotechnol 2008, 7:173-190.
- 5.Zheng Y, Zhao J, Xu F, Li Y. Pretreatment of lignocellulosic biomass for enhancedbiogas production. Prog Energy Combust Sci 2014, 42:35-53.
- 6.Kwaśny J, Banach M, Kowalski Z. Przegląd technologii produkcji biogazu różnegopochodzenia. Chem - czasopismo techniczne 2012, 17:83-102.
- 7.Schattauer A, Weiland P. Opis wybranych podłoży. Biogaz produkcjawykorzystywanie. Institut für Energetik und Umwelt gGmbH, 2005, 109-124.
- 8.Romaniuk W, Domasiewicz T. Substraty dla biogazowni rolniczych. Hortpress Sp.z o.o. Warszawa, 2014, 20-15.
- 9.Curkowski A, Oniszk-Popławska A. Surowce do produkcji biogazu – uproszczonametoda obliczenia wydajności biogazowni rolniczej. Czysta energ 2010, 1:25-27.
- 10.Cukrowski A, Mroczkowski P, Oniszk-Popławska A, Wiśniewski G. Biogaz rolniczy –produkcja i wykorzystywanie. Maz Agencja Energ Sp. z o.o., Warszawa, 2009, 17-46.
- 11. Skrzypek J. Biznesplan – model najlepszych praktyk. Poltext sp. z.o.o., Warszawa,2012, 186-192.
- 12. Ogrodwczyk D. Projekt instalacji pracującej w układzie energii skojarzonej zasilanejbiogazem. Master's thesis made at the institute of general food chemistry, LodzUniversity of Technology, 2015, 62-61.
- 13. Information of the President of the energy regulatory office no. 12/2015 on theaverage selling price of electricity on the competitive market for the year 2014.Online: http://www.ure.gov.pl/pl/stanowiska, were reviewed 20.08.2015.
- 14. Information of the President of the energy regulatory office no. 22/2014 on the unitsubstitution fee for cogeneration in force in 2015.Online: http://www.ure.gov.pl/pl/stanowiska, were reviewed 20.08.2015.
Typ dokumentu
Bibliografia
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