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Reducing Life-Cycle Greenhouse Gas Emissions of Corn Ethanol

机译:减少玉米乙醇的生命周期温室气体排放

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A life-cycle assessment (LCA) of corn ethanol was conducted to determine the reduction in the life-cycle greenhouse gas (GHG) emissions of corn ethanol compared to gasoline by integrating biomass fuels in a 190 million liter (50 million gallon) per year dry-grind corn ethanol plant to replace fossil fuels (natural gas and grid electricity). The biomass fuels studied are corn stover and ethanol co-products [dried distillers grains with solubles (DDGS), and syrup (solubles portion of DDGS)]. The biomass conversion technologies/systems considered are process heat (PH) only systems, combined heat and power (CHP) systems, and biomass integrated gasification combined cycle (BIGCC) systems. The key inventory components of the LCA are corn production, stover production, ethanol production, fertilizer inputs, truck transport, co-product credits, ethanol transport to blending, biomass fuel conversion systems, and combustion of anhydrous ethanol (E100). The life-cycle GHG emission reduction for corn ethanol compared to gasoline (97.7 g CO_2e/MJ gasoline) is 42.5% for PH with natural gas, 61.3% for PH with corn stover, 82.2% for CHP with corn stover, 81.6% forlGCC with natural gas, 127.7% for BIGCC with corn stover, and 119.1% for BIGCC with syrup and stover.These GHG emission estimates do not include indirect land use change effects. GHG emission reductions for CHP, IGCC, and BIGCC include power sent to the grid which replaces electricity from coal. BIGCC results in greater reductions in GHG emissions thanIGCC with natural gas because biomass is substituted for fossil fuels. In addition, underground sequestration of CO_2 gas from the ethanol plant's fermentation tank could further reduce the life-cycle GHG emission of corn ethanol by 31.5% compared to gasoline.
机译:通过将生物量燃料(每年5000万加仑)纳入190万升(5000万加仑),进行了与汽油相比,确定玉米乙醇的生命周期评估(LCA)以确定玉米乙醇的生命周期温室气体(GHG)排放量减少干式玉米乙醇厂取代化石燃料(天然气和电网)。研究的生物质燃料是玉米秸秆和乙醇共同产品[用可溶物(DDGS)和糖浆(DDGS的可溶物部分)]的干蒸馏器谷物]]。所考虑的生物质转换技术/系统是工艺热(pH)仅系统,组合热量和功率(CHP)系统,以及生物量集成气化组合循环(BIGCC)系统。 LCA的关键库存组分是玉米生产,橄榄植物生产,乙醇生产,肥料投入,卡车运输,共同产品学分,乙醇输送到混合,生物质燃料转换系统和无水乙醇的燃烧(E100)。与汽油(97.7g CO_2E / MJ汽油相比的玉米乙醇的生命周期GHG排放减少为PH值42.5%,对于天然气,61.3%,PH与玉米秸秆的pH值,82.2%,玉米秸秆的CHP,81.6%FORLGCC天然气,对玉米秸秆的BIGCC 127.7%,与糖浆和液体的BIGCC为119.1%。这些温室气体排放估计不包括间接土地利用变化效应。 CHP,IGCC和BIGCC的GHG排放减少包括送到栅格的电力,取代煤炭的电力。 BIGCC导致GHG排放量减少,具有天然气,因为生物量取代化石燃料。此外,与汽油相比,来自乙醇植物发酵罐的Co_2气体的地下封存可以进一步将玉米乙醇的生命周期GHG排放量减少31.5%。

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