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Life cycle assessment of native plants and marginal lands for bioenergy agriculture in Kentucky as a model for south?¢????eastern USA

机译:肯塔基州作为美国东部南部模式的生物能源农业的原生植物和边缘土地的生命周期评估

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The Brookings Institute analysis rate both Lexington and Louisville, Kentucky (USA) as two of the nation's largest carbon emitters. This high carbon footprint is largely due to the fact that 95% of electricity is produced from coal. Kentucky has limited options for electric power production from low carbon sources such as solar, wind, geothermal, and hydroelectric. Other states (TN, IN, OH, WV, and IL) in this region are similarly limited in renewable energy capacity. Bioenergy agriculture could account for a proportion of renewable energy needs, but to what extent is unclear. Herein, we found that abandoned agricultural land, not including land that is in fallow or crop rotation, aquatic ecosystems, nor plant?¢????life that had passed through secondary ecological succession totaled 1.9?¢????Mha and abandoned mine?¢????land totaled 0.3?¢????Mha, which combined accounted for 21% of Kentucky's land mass. A life cycle assessment was performed based on local yield and agronomic data for native grass bioenergy agriculture. These data showed that utilizing Kentucky's marginal land to grow native C 4 grasses for cellulosic ethanol and bioelectricity may account for up to 13.3% and 17.2% of the states 2 trillion MJ energy consumption and reduce green house gas emissions by 68% relative to gasoline.
机译:布鲁金斯学会(Brookings Institute)的分析将列克星敦市和肯塔基州路易斯维尔市(美国)列为全美最大的两个碳排放国。如此高的碳足迹主要是由于95%的电力来自煤炭。肯塔基州使用低碳能源(例如太阳能,风能,地热能和水力发电)生产电力的选择有限。同样,该地区的其他州(TN,IN,OH,WV和IL)在可再生能源容量方面也受到限制。生物能源农业可占可再生能源需求的一部分,但目前尚不清楚。在这里,我们发现被废弃的农业用地,不包括处于休耕或轮作的土地,水生生态系统,也没有经过二次生态演替的植物的生命,总计为1.9公顷。我的土地总面积为0.3公顷Mha,总计占肯塔基州土地面积的21%。基于本地产量和农用生物草农业生物能源数据的生命周期评估。这些数据表明,利用肯塔基州的边缘土地种植天然C 4草来生产纤维素乙醇和生物电,可分别占州2万亿兆焦耳能耗的13.3%和17.2%,相对于汽油,温室气体排放量减少68%。

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