dc.creatorAlonso-Pippo W.
dc.creatorLuengo C.A.
dc.creatorFonseca F.F.
dc.creatorGarzone P.
dc.creatorCornacchia G.
dc.date2009
dc.date2015-06-26T13:34:09Z
dc.date2015-11-26T14:59:10Z
dc.date2015-06-26T13:34:09Z
dc.date2015-11-26T14:59:10Z
dc.date.accessioned2018-03-28T22:10:46Z
dc.date.available2018-03-28T22:10:46Z
dc.identifier
dc.identifierOpen Fuels And Energy Science Journal. , v. 2, n. , p. 34 - 39, 2009.
dc.identifier1876973X
dc.identifier10.2174/1876973X00902010034
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-78651548398&partnerID=40&md5=bd743bb58f45d9749a7362c477f93d0e
dc.identifierhttp://www.repositorio.unicamp.br/handle/REPOSIP/91902
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/91902
dc.identifier2-s2.0-78651548398
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1255999
dc.descriptionThere are more than 70 sugar producer countries around the world. Most of them are underdeveloped and poor. Especially for the underdeveloped, 3 rd world, the sugarcane residues disposal has first order priority. The lack of an alternative energy carrier to electricity with storage capability for use in off-season has to date been an unsolvable question for the sugar agro-industry. The improvement of cogeneration capacity via implementation of more efficient cogeneration systems and the barriers for their implementation were analyzed. A techno-economic assessment was carried out regarding the three most probable scenarios of sugar producer countries today. The biomass availability and high investment costs continue to be the main barriers to overcome in order to produce Bio-oil starting from sugarcane biomass solid residues. © Alonso-Pippo et al.; Licensee Bentham Open.
dc.description2
dc.description
dc.description34
dc.description39
dc.descriptionJenkins, B.M., Baxter, L.L., Miles, T.R., Miles, T.R., Combustion properties of biomass. Combustion properties of biomass (1998) Fuel Proc. Technol, 54 (1-3), pp. 17-46
dc.descriptionDermibas, A., Combustion characteristic of different biomass fuels (2004) Prog. Energy Combust. Sci, 30, pp. 219-230
dc.descriptionhttp://faostat.fao.org/, FAOSTAT. FAO, [accessed December 12, 2008]Zanzi, R., Sjöström, K., Björnbom, E., Rapid high-temperature pyrolysis of biomass in a free fall reactor (1996) Fuel, 75 (5), pp. 545-550
dc.descriptionHugot, E., (1986) Hand Book of Cane Sugar Engineering, , 3rd ed.
dc.descriptionElsevier Science: Amsterdam
dc.descriptionAlonso-Pippo, W., Garzone, P., Cornacchia, G., Agro-industry sugarcane residues disposal: The trends of their conversion into energy carrier in Cuba (2007) Waste Manag, 27, pp. 869-885
dc.description(2004) Clean and Efficient Biomass Cogeneration Technology In Asean, , EC-ASEAN COGEN Program, POWER-GEN Asia Conference and Exhibition October 5-7, Bangkok
dc.descriptionLarson, E.D., Williams, R.H., Leal, L.V., Regis, M., A review of biomass integrated-gasifier/gas turbine combined cycle technology and its application in sugarcane industries with an analysis for Cuba (2001) Energy Sustain. Dev, 5 (1), pp. 54-76
dc.descriptionRenewables for power generation status & prospect (2003) Oecd.process. Technol, 54 (1-3), pp. 17-46. , IEA
dc.descriptionAlonso Pippo, W., Del Rey Ocampo, J., Technology for Biofuels and Syn-fuels production (2004) Preliminary Results, , (original in Spanish). Institute of Materials and Reactive, University of Havana
dc.descriptionWu, C.Z., Huang, H., Zheng, S.P., Yin, X.L., An economic analysis of biomass gasification and power generation in China (2002) Bioresource Technol, 83, pp. 65-70
dc.description(2008), http://www.matche.com/Equip.Cost/Reactor.htm, Matches. Reactor cost estimate, [Accessed November 10(2008), http://www.che.com/pindex/index.php, Marshall, Marshall & Swift equipment cost index, [Accessed October 12Bridgwater, A.V., Economics of primary fuels production from biomass (1990) Energy Research Group
dc.descriptionSugacane Agro-industry, Biomass and Renewable Energy (2004) Forum of Science and Technology, , Cuban Ministery of Sugar, (original in Spanish). Ministery of Sugar Republic of Cuba. Havana, January 16
dc.descriptionGarzone, P., Cornacchia, G., Alonsopipo, W., (2008) Experimental Plant For Hydrogen Enriched Gas Production Starting From Residues Via Gasification-steam Reforming-water Shift, pp. 485-490. , Editors Maggioli Editore Proceeding of Ecomondo 2008. Rimini, Italy, November 5-8, 2008, original in Italian), Rimini, Italy
dc.languageen
dc.publisher
dc.relationOpen Fuels and Energy Science Journal
dc.rightsaberto
dc.sourceScopus
dc.titleCogeneration And Bio-oil Production Starting From Sugarcane Biomass Residues: Barriers, Challenges And Opportunities
dc.typeArtículos de revistas


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