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Studies on the Integration of 1.5th and 2nd generation Fuel Ethanol Production from Sweet Sorghum Stalks: Economic Performance, Energy Consumption and Carbon Emissions

机译:甜高粱秸秆的1.5和第2代燃料乙醇生产的整合:经济绩效,能源消耗和碳排放量

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The paper investigates the feasibility of integrating 1.5th and 2nd generation (G) conversion technology for ethanol production from sweet sorghum stalks, in terms of economic performance, energy consumption and greenhouse gas emissions (3E). To that end, discriminants were developed for economic analysis to determine the conditions under which the transition from pure 1.5thG to the integration technology takes place. The paper also developed equations to calculate energy output/input ratio and carbon emissions during ethanol production processes. The results indicate that the main barrier of the development of integration technology is the high cost of 2nd G ethanol production. The residues from 2nd G production should be burned to supply energy for the ethanol plant, which is important to enhance the energy output/input ratio and to cut down carbon emissions. Compared with 1.5th G technology, the integration pathway brings about higher energy output/input ratio, but with slightly less amount of carbon emission reduction. However, the absolute amount of carbon emission reduction is still considerable. The estimation shows that the integration technology is promising in long term but infeasible under current conditions.
机译:本文研究了从经济绩效,能源消耗和温室气体排放(3E)的甜高粱秸秆中乙醇生产中整合了乙醇产量的第15和第2代(G)转换技术的可行性。为此,开发了判别以进行经济分析,以确定从纯1.5g转换到集成技术的转型。本文还开发了在乙醇生产过程中计算能量输出/输入比和碳排放的方程。结果表明,集成技术发展的主要屏障是2nd乙醇生产的高成本。 2ND G生产的残留物应燃烧以供应乙醇厂的能量,这对于提高能量输出/输入比并降低碳排放是重要的。与1.5th G技术相比,集成途径带来了更高的能量输出/输入比,但省略了较少量的碳排放量。但是,绝对量的碳排放量仍然相当大。估计表明,整合技术在长期内承诺,但在当前条件下不可行。

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