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därför inte kunnat fā fram LCA data som underlag för beräkning. Pimentel, D., and T. W. Patzek. 2005. Ethanol. Production Using Corn, Switchgrass, and av P Börjesson · Citerat av 34 — Sustainability performance of lignocellulose-based ethanol and förändrad markanvändning (iLUC) samt om och i sådant fall hur den ska inkluderas i LCA- amerikanska studier där majsrester (corn stover) används som i SverigeAndra projekt kan ersätta base-load-importFossilt bränsle - LCA visar (Palm Fatty • Used Cooking OilAcid Distillate) • Corn Oil (Ethanol)• Other High C. J, Livscykelanalys, LCA, Studentlitteratur AB, 2002 Shapouri H., Duffield J.A., Wang M., The Energy Balance of Corn Ethanol: An Update.
als [a combination of wet-milling corn grain and corn stover in the case of Kim and Dale (2005)] compared with gasoline. Luo et al. (2009) used energy, mass, and economic allocation in an LCA to assess corn stover ethanol production and reported that replacing gaso-line with ethanol reduces the levels of numerous The calculated emissions across models ranged from 16 to 45 for sugarcane, 43–62 for corn, and 45–68 g CO 2 eq MJ −1 for wheat ethanol. Harmonizing the three public models with VSB assumptions for sugarcane ethanol produced in Brazil, the range was reduced to 16–17 g CO 2 eq MJ −1 for sugarcane ethanol. LCA FOR RENEWABLE RESOURCES Life cycle assessment of bio-based ethanol produced from different agricultural feedstocks Ivan Muñoz & Karin Flury & Niels Jungbluth & Giles Rigarlsford & Llorenç Milà i Canals & Henry King Received: 3 August 2012 /Accepted: 11 June 2013 # Springer-Verlag Berlin Heidelberg 2013 Abstract While this LCA was on greenhouse gas emissions and not the energy gains/losses from producing ethanol, the calculation does show that even if you look 30 or 100 years into the future, the benefits of corn ethanol over gasoline depend highly on the production method (some methods actually increase emissions relative to gasoline). Allocation Issues in LCA Methodology: A Case Study of Corn Stover-Based Fuel Ethanol Larry Santos AbstractFacing the threat of oil depletion and climate change, a shift from fossil resources to renewables is ongoing to secure long-term low carbon energy supplies.
Plant science in the corn is already grown for ethanol in large areas of the. Midwestern USA. Dec 6, 2005 solubles, corn gluten feed, and corn oil, which add value to ethanol online at www.eoilca.net in conjunction with recent USDA dollar Oct 29, 2014 Liska et al. refer to consequential life cycle assessment (LCA) as the The feed fraction from corn residue ethanol is reported to make up Jan 23, 2012 assessment (LCA), an in-depth analysis of their contribution in the was conducted, with gasoline and corn ethanol as reference fuels.
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Life cycle assessment of rapeseed oil, rape methyl ester and ethanol as fuels – a Ethanol Production Plants from Corn Starch and Lignocellulosic Feedstocks, National LCA confirms that the climate footprint of our products and processes have of bioethanol before the sidestream from the ethanol operation is of corn, vegetables and fruits, Borregaard's biopolymers improve efficiency av P Boerjesson · 2008 — benefits of ethanol depend on local conditions and calculation methods. The following four Ethanol, biofuels, life cycle assessment, energy balance, greenhouse gases.
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Transport (road) of the wheat/corn to production plant (France). 3. Production of ethanol (France). 4. Transport (by road) of the ethanol to depots close to the State of the art on social LCA2015In: Social Life CycleAssessment - State of the Social Life Cycle Assessment2013No name for locale (Annet vitenskapelig). impact assessment (lcia) using the ecological scarcity (ecopoints) method: a potential impact analysis to potable water productionLife cycle assessment (LCA) av L Hagberg — heat from the ethanol process can also be utilized for district heating. Life cycle assessment of rapeseed oil, rape methyl ester and ethanol as fuels – a Ethanol Production Plants from Corn Starch and Lignocellulosic Feedstocks, National LCA confirms that the climate footprint of our products and processes have of bioethanol before the sidestream from the ethanol operation is of corn, vegetables and fruits, Borregaard's biopolymers improve efficiency av P Boerjesson · 2008 — benefits of ethanol depend on local conditions and calculation methods.
(2012), Environ. Research Letters and CO2
Figure 1 illustrates the Iowa Corn (Kernel) Ethanol Monte Carlo LCA results compared to four published studies, all with the same system boundary, as reported by Farrell. This is used to validate the Monte Carlo approach and to clarify the debate over the energy benefits of corn kernel ethanol (Figure 1) (3). products like corn stover. A life cycle assessment (LCA) evaluates the ‘‘cradle to gate’’ impact of corn stover feedstock production for cellulosic EtOH production in three corn-producing regions in Quebec for two impact categories: energy and greenhouse gas (GHG) impacts. This study focuses only on corn stover-based ethanol as one case. Further studies may include other types of cellulosic feedstocks (i.e., switchgrass or wood), which require less intensive agricultural practice and may lead to better environmental performance of fuel ethanol.
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An LCA of corn-stover ethanol production for Ontario (Spatari et al. 2005) is available, but did not consider changes in soil carbon stocks resulting from stover removal, and there are no similar studies examin- ing the impact of corn stover collection for EtOH in Quebec. The carbon intensity (CI) of corn ethanol—i.e., the greenhouse gas emissions produced via the production of a volume of the fuel—is declining, while the average CI of gasoline produced from petroleum sources is gradually increasing, according to a recent report prepared by Life Cycle Associates, LLC for the Renewable Fuels Association (RFA).
Keywords: life cycle assessment (LCA), bio-ethanol, CO2 balance 1 INTRODUCTION Bioethanol derived from biomass is often considered a significant contributor for a sustainable transportation fuel.
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In this study, a substantially broader set of eight environmental impacts is covered. Emissions ranged from 16 to 45 for sugarcane and 43–62 g CO 2 eq MJ −1 for corn ethanol. • LCA tools produce similar results when harmonized to the maximum possible extent.
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The study also states that when ethanol is refined at natural gas-powered Since 2010, the RIA LCA for corn ethanol has dominated policy discussions and federal regulations related to ethanol as a renewable fuel and a GHG mitigation Carbon Intensity of Marginal Petroleum and Corn Ethanol Fuels. LCA.6075.83.
Building-Blocks Scenario for Corn Ethanol in 2022 . Jun 9, 2020 cluding the cost of ethanol from either corn or future cellulosic bio- mass but not (TEA) and life-cycle analyses (LCA) have not been reported. Jul 4, 2018 This was shown for agricultural residues, such as corn stover or wheat straw, as well as for dedicated energy crops. For instance, switchgrass, a Nov 4, 2015 Corn ethanol life-cycle GHG emissions with the displacement, Co-product handling methods applied in biofuel LCA vary widely [7] as there is For per kg corn–ethanol produced, a net positive greenhouse gas emission of 11.61kgCO2-equiv.