Life cycle assessment of bio-based ethanol produced from different agricultural feedstocks (original) (raw)
References
Adami M, Rudorff BFT, Freitas RM, Aguiar DA, Sugawara LM, Mello MP (2012) Remote sensing time series to evaluate land use change of recent expanded sugar cane crop in Brazil. Sustainability, 4(4):574–585 Google Scholar
ADEME (2010) Analyses de Cycle de Vie appliquées aux biocarburants de première génération consommés en France. Direction Production et Energies Durables (DEPD), France
Ardente F, Cellura M (2011) Economic allocation in life cycle assessment. The state of the art and discussion of examples. J Ind Ecol 16(3):387–398 Article Google Scholar
BSI (2012) PAS 2050–1: 2012 assessment of life cycle greenhouse gas emissions from horticultural products. Supplementary requirements for the cradle to gate stages of GHG assessments of horticultural products undertaken in accordance with PAS 2050. British Standards Institution, London Google Scholar
Brandão M, Milà i Canals L (2012) Global characterisation factors to assess land use impacts on biotic production. Int J Life Cycle Assess. doi:10.1007/s11367-012-0381-3 Google Scholar
California EPA (2009) Proposed regulation to implement the low carbon fuel standard, volume I. Staff Report: Initial Statement of Reasons. California Environmental Protection Agency, California Air Resources Board, Sacramento
de Baan L, Alkemade R, Koellner T (2012) Land use impacts on biodiversity in LCA: a global approach. Int J Life Cycle Assess. doi:10.1007/s11367-012-0412-0 Google Scholar
de Jong E, Higson A, Walsh P, Wellisch M (2012) Bio-based chemicals, value added products from biorefineries. IEA Bioenergy, Task42 Biorefinery
De Klein C, Novoa RSA, Ogle S, Smith KA, Rochette P, Wirth TC, McConkey BG, Mosier A, Rypdal K, Walsh M, Williams SA (2006) N2O emissions from managed soils, and CO2 emissions from lime and urea application. In: Eggleston HS, Buendia L, Miwa K, Ngara T, Tanabe K. (eds.) IPCC Guidelines for National Greenhouse Gas Inventories. IGES, Japan. Vol 4, chapter 11
FAO (2010) Bioenergy environmental impact analysis (BIAS). Food and Agriculture Organization of the United Nations, Rome Google Scholar
Flury K, Jungbluth N (2012) Greenhouse gas emissions and water footprint of ethanol from maize, sugar cane, wheat and sugar beet. ESU-services, Uster, Switzerland Google Scholar
Flynn HC, Milà iCanals L, Keller E, King H, Sim S, Hastings A, Wang S, Smith P (2012) Quantifying global greenhouse gas emissions from land-use change for crop production. Glob Change Biol 18(5):1622–1635 Article Google Scholar
Frischknecht R, Jungbluth N, Althaus H-J, Doka G, Dones R, Hischier R, Hellweg S, Nemecek T, Rebitzer G, Spielmann M (2010) Overview and methodology. Final report ecoinvent data v2.2, No. 1. Swiss Centre for Life Cycle Inventories, Dübendorf Google Scholar
Fu ZG, Chan AW, Minns DE (2003) Lyfe cycle assessment of bio-ethanol derived from cellulose. Int J Life Cycle Assess 8(3):137–141 ArticleCAS Google Scholar
Goedkoop M, Heijungs R, Huijbregts M, De Schryver A, Struijs J, van Zelm R (2009) ReCiPe 2008 A life cycle impact assessment method which comprises harmonised category indicators at the midpoint and the endpoint level. First edition. Report I: characterisation. Ministry of housing, Spatial Planning and Environment (VROM), The Netherlands Google Scholar
Jungbluth N, Chudacoff M, Dauriat A, Dinkel F, Doka G, Faist Emmenegger M, Gnansounou E, Kljun N, Schleiss K, Spielmann M, Stettler C, Sutter J (2007) Life cycle inventories of bioenergy. ecoinvent report no. 17, v2.0. ESU-services, Uster
Kim S, Dale BE (2009) Regional variations in greenhouse gas emissions of biobased products in the United States—corn-based ethanol and soybean oil. Int J Life Cycle Assess 14:540–546 Article Google Scholar
Koellner T, de Baan L, Brandão M, Milà i Canals L, Civit B, Margni M, Saad R, Maia de Souza D, Beck T, Müller-Wenk R (2013) UNEP-SETAC guideline on global land use impact assessment on biodiversity and ecosystem services in LCA. Int J Life Cycle Assess. doi:10.1007/s11367-013-0579-z Google Scholar
Kosaric N, Duvnjak Z, Farkas A, Sahm H, Binger-Meyer S, Goebel O, Mayer D et al (2001) Ethanol. In: Arpe (ed) Ullmann’s encyclopedia of industrial chemistry: electronic release, 6th edn. Wiley, Weinheim Google Scholar
Laborde D (2011) Assessing the land use change consequences of European biofuel policies, final report. Prepared by the International Food Policy Institute (IFPRI) for the European Commission. Specific Contract No SI2. 580403, implementing Framework Contract No TRADE/07/A2
Linak E, Janshekar H, Inoguchi Y (2009) Ethanol. Chemical economics handbook research report. SRI Consulting, Houston
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 ArticleCAS Google Scholar
Meyers R (1986) Handbook of chemical production processes. McGraw-Hill, New York Google Scholar
Miller SA, Landis AE, Theis TL (2007) Environmental trade-offs of biobased production. Environ Sci Technol 41(15):5176–5182 ArticleCAS Google Scholar
Müller-Wenk R, Brandão M (2010) Climatic impact of land use in LCA—carbon transfers between vegetation/soil and air. Int J Life Cycle Assess 15:172–182 Article Google Scholar
Muñoz I, Rigarlsford G, Milà i Canals L, King H (2013) Accounting for greenhouse-gas emissions from the degradation of chemicals in the environment. Int J Life Cycle Assess 18(1):252–262 Article Google Scholar
Nemecek T, Heil A, Huguenin O, Meier S, Erzinger S, Blaser S, Dux D, Zimmermann A (2007) Life cycle inventories of agricultural production systems. Ecoinvent report no. 15, v2.0. Agroscope FAL Reckenholz and FAT Taenikon, Swiss Centre for Life Cycle Inventories, Dübendorf Google Scholar
Nemecek T, Weiler K, Plassmann K, Schnetzer J, Gaillard G, Jefferies D, García–Suárez T, King H, Milà i Canals L (2012) Estimation of the variability in global warming potential of global crop production using a modular extrapolation approach (MEXALCA). J Clean Prod 31:106–117 Article Google Scholar
Nguyen TT, Gheewala SH (2008a) Life cycle assessment of fuel ethanol from cassava in Thailand. Int J Life Cycle Assess 13(2):147–154 ArticleCAS Google Scholar
Nguyen TT, Gheewala SH (2008b) Life cycle assessment of fuel ethanol from cane molasses in Thailand. Int J Life Cycle Assess 13(4):301–311 ArticleCAS Google Scholar
Ometto AR, Hauschild MZ, Lopes Roma WN (2009) Lifecycle assessment of fuel ethanol from sugarcane in Brazil. Int J Life Cycle Assess 14:236–247 ArticleCAS Google Scholar
Renouf MA, Wegener MK, Nielsen LK (2008) An environmental life cycle assessment comparing Australian sugarcane with US corn and UK sugar beet as producers of sugars for fermentation. Biomass Bioenerg 32:1144–1155 ArticleCAS Google Scholar
Roches A, Nemecek T, Gaillard G, Plassmann K, Sim S, King H, Milà i Canals L (2010) MEXALCA: a modular method for the extrapolation of crop LCA. Int J Life Cycle Assess 15(8):842–854 ArticleCAS Google Scholar
Röös E, Sundberg C, Hansson P-A (2010) Uncertainties in the carbon footprint of food products: a case study on table potatoes. Int J Life Cycle Assess 15:478–488 Article Google Scholar
Saad R, Koellner T, Margni M (2013) Land use impacts on freshwater regulation, erosion regulation and water purification: a spatial approach for a global scale level. Int J Life Cycle Assess. doi:10.1007/s11367-013-0577-1 Google Scholar
Silalertruksa T, Gheewala SH (2011) Long-term bioethanol system and its implications on GHG emissions: a case study of Thailand. Environ Sci Technol 45:4920–4928 ArticleCAS Google Scholar
Stewart LK, Charlesworth PB, Bristow KL (2003) Estimating nitrate leaching under a sugarcane crop using APSIM-SWIM. Proceedings from: MODSIM 2003 International Congress on Modelling and Simulation, Modelling and Simulation Society of Australia and New Zealand, July 2003
Sutter J (2007) Life cycle inventories of petrochemical solvents. ecoinvent report No. 22, v2.0. ETH Zürich. Swiss Centre for Life Cycle Inventories, Dübendorf Google Scholar
Tsao CC, Campbell JE, Mena-Carrasco M, Spak SN, Carmichael GR, Chen Y (2011) Increased estimates of air-pollution emissions from Brazilian sugar-cane ethanol. Nat Clim Chang 2:53–57 Article Google Scholar
USEPA (2010) Renewable fuel standard program (RFS2) regulatory impact analysis. EPA-420-R-10-006