Sugarcane as an energy source

Biomass Conversion and Biorefinery - Tập 3 Số 1 - Trang 17-26 - 2013
M. de L. da S. Leal1, Arnaldo Walter2, Joaquim E. A. Seabra2
1Brazilian Bioethanol Science and Technology Laboratory, Campinas, Brazil
2Brazilian Bioethanol Science and Technology Laboratory, Rua Guiseppe Máximo Scolfaro, 10.000, Campinas, SP, Brazil, 13083-970

Tóm tắt

Từ khóa


Tài liệu tham khảo

Dinardo-Miranda LL, Vasconcelos ACM, Landell MGA (2008) Cana de Açúcar. 882, SP

FAO (2012) United Nations Food and Agriculture Organization, FAOSTAT, http://faostat.fao.org/default/.aspx

Cheesman O (2005) Environmental impacts of sugar production. CABI Publishing, Cambridge, p 235

Autrey LJC (2006) Kong Win Chang KTKF (2006) The multi-functional role of sugar cane in industry in Mauritius: progress and prospects. ISSCT Co-Products Workshop, Maceio

Corcodel L, Roussel C (2010) Energy content: a new approach to cane evaluation. Proceedings of the XXVII International Society of Sugar Cane Technologists (ISSCT) congress, Vera Cruz, Mexico

REN21 (2011) Renewables 2011—global status report. Renewable Energy Policy Network for the 21st Century, 116p

CONAB (2010) Companhia Nacional de Abastecimento, Perfil do Setor de Açúcar e Álcool no Brasil, Edição para a Safra 2008-2009, 80p

Leal and Macedo (2004) Evolução tecnológica dos sistemas de geração de energia nas usinas de açúcar e álcool. Biomassa Energia 1(3):245–253

CONAB (2011) Companhia Nacional de Abastecimento, A Geração Termoelétrica com a queima do Bagaço da Cana de Açúcar no Brasil: Análise do Desempenho da Safra 2009-2010, 160p

BNDES (2008) Banco Nacional de Desenvolvimento Econômico e Social, O Perfil do Apoio do BNDES ao Setor Sucroalcooleiro, Report prepared by Artur Y. Milanez, Nereida R. Barros e Paulo S.C. Favaret Filho, 34p

UNICA (2008) Brazilian Sugarcane Industry Association, outlook for Brazilian biofuels. 2008 Canadian Renewable Fuels Summit, December 103, 2008

EPE (2011) Empresa de Pesquisa Energética (Energy Research Company), Plano Decenal de Expansão de Energia 2020, 343p

Grancher CV, Bonhomme R, Chartier P (1978) Efficiency of sugar cane and cowpea as solar energy converters. In: Sun: mankind's future source of energy. Proceedings of the international solar energy congress, New Delhi, India, January 16-21, 1978, vol 2, p. 797-803.8

GCEP (2005) An assessment of biomass feedstock and conversion research opportunities. Global Climate and Energy Project Technical Assessment Report, Stanford University. http://gcep.stanford.edu

Waclawovsky AJ, Sato PM, Lembke CG, Moore PH, Souza GM (2010) Sugarcane for bioenergy production: an assessment of yield and regulation of sucrose content. Plant Biotechnol J 8:263–276. doi:10.1111/j.1467-7652.2009.00491.x

Macedo IC, Seabra JEA, Silva JEAR (2008) Green house gases emissions in the production and use of ethanol from sugarcane in Brazil: the 2005/2006 averages and a prediction for 2020. Biomass Bioenerg 32:582–595. doi:10.1016/j.biombioe.2007.12.006

EPA (2010) US Environmental Protection Agency, Renewable Fuel Standard Program (RFS2) Regulatory Impact Analysis, EPA-420-R-10-006, 1120p

Leite RCC (2009) Bioetanol combustível: uma oportunidade para o Brasil (in Portuguese). CGEE, Brasilia, p 536

Moura AG (2006) Introduction of the system with thermal integration in Brazilian distilleries: concentration of vinasse and splitfeed. International Society of Sugar cane Technologists Co-Products Workshop, Maceio, Alagoas, 12-16 November, 2006

Olivério JL (2008) Cogeração – Uma Nova Fonte de Renda Para as Usinas de Açúcar e Etanol, SIMTEC 2008, Piracicaba, SP, 4 julho de 2008

American Sugar Cane League (2007) Notice of release of a high fiber sugarcane variety L 79-1002, Vol 85, No. 10, July 2007

Rao PS (2007) Genetic potential of sugarcane germplasm for higher biomass production to generate energy, WorshopTecnológico Sobre Cana Energia, Campinas, SP, October 05, 2007

Landell MGA, Pinto LR, Creste S, Chabregas, SM, Burnquist WL (2010) Technical road map for ethanol: genetic improvement and biotechnology. In: Sugarcane bioethanol: R&D for Productivity and Sustainability, Coordinator Luis A.B. Cortez, São Paulo, Blücher, p. 883-907

Brunelli S (2011) Juice extraction: A mature sector (in Portuguese), Opiniões, Jan-Mar, 2011, p. 20-24

Perrone CC, Appel LG, Lellis VLM, Ferreira FM, Souza AM, Ferreira-Leitão VS (2011) Ethanol: an evaluation of its scientific and technological development and network of players during the period of 1995 to 2009. Waste Biomass Valor 2:12–32. doi:10.1007/s12649-010-9049-z

Hamelinck CN, van Hooijdonk G, Faaij APC (2005) Ethanol from lignocellulosic biomass: techno-economic performance in short-, middle- and long-term. Biomass Bioenerg 28:384–410. doi:10.1016/j.biombioe.2004.09.002

Sun Y, Cheng J (2002) Hydrolysis of lignocellulosic materials for ethanol production: a review. Bioresource Technol 83:1–11. doi:10.1016/S0960-8524(01)00212-7

Aden A et al. (2002) Lignocellulosic biomass to ethanol process design and economics utilizing co-current dilute acid prehydrolysis and enzymatic hydrolysis for corn stover. Golden (CO): National Renewable Energy Laboratory

June 2002. Report No.: TP-510-32438

Humbird D et al. (2011) Process design and economics for biochemical conversion of lignocellulosic biomass to ethanol: dilute-acid pretreatment and enzymatic hydrolysis of corn stover. Technical Report NREL/TP-5100-47764, May 2011

Faaij A (2008) Biofuel conversion technologies. In: Zuurbier P, van de Vooren J (eds) Sugarcane ethanol: Contributions to climate change mitigation and the environment. Wageningen Academic Publisher, The Netherlands, pp 159–180

Eisentraut A (2010) Sustainable production of second-generation biofuels. Information Paper, International Energy Agency (IEA), Paris, 2010, 221 p

Seabra JEA, Tao L, Chum HL, Macedo IC (2010) A techno-economic evaluation of the effects of centralized cellulosic ethanol and co-products refinery options with sugarcane mill clustering. Biomass Bioenergy 34:1065–1078. doi:10.1016/j.biombioe.2010.01.042

Dias MOS, Junqueira TL, Cavalett O, Cunha MP, Jesus CDF, Rossell CEV, Maciel Filho R, Bonomi A (2012) Integrated versus stand-alone second generation ethanol production from sugarcane bagasse and trash. Bioresource Technol 103(1):152–161. doi:10.1016/j.biortech.2011.09.120

Hassuani SJ, Leal MRLV, Macedo IC (eds) (2005) Biomass power generation—sugar cane bagasse and straw. PNUD-CTC, Piracicaba, p 217

Macedo IC (2005) Sugar cane's energy: Twelve studies on Brazilian sugar cane agribusiness and its sustainability. Berlendis Ed., São Paulo, p 237

Goldemberg J, Coelho ST, Guardabassi P (2008) 2008 The sustainability of ethanol production from sugarcane. Energy Policy 36:2086–2097. doi:10.1016/j.enpol.2008.02.028

Zuurbier P, van den Vooren J (eds) (2008) Sugarcane ethanol contributions to climate change mitigation and the environment. Wageningen Academic Publishers, The Netherlands, p 255

Walter A, Dolzan P, Quilodrán O, Oliveira JG, Silva C, Piacente F, Segerstedt A (2010) Sustainability assessment of bio-ethanol production in Brazil considering land use change. GHG emissions and socio-economic aspects. Energy Policy. doi:10.1016/j.enpol.2010.07.043