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Hydrologic and water quality impacts and biomass production potential on marginal land

机译:边际土地上的水文和水质影响以及生物质生产潜力

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摘要

Marginal land is proposed as viable land resources for biofuel production. However, environmental impacts of perennial biomass production on marginal lands is not clear. This study defined three marginal land types and assessed their availability and potential for biofuel production in the St. Joseph River watershed. The potential impacts were evaluated using the Agricultural Policy/Environmental eXtender (APEX) model. The total area of marginal land was estimated to be 611 km(2) covering 21.7% of the watershed. 161 and 207 million liters of bioethanol could be produced from the marginal land utilizing switchgrass and Miscanthus, respectively. Converting marginal land currently under corn/soybean production to switchgrass and Miscanthus reduced water yield by 13.4-36.3% and improved water quality by reducing soil erosion by 27%-98%. Similarly, total nitrogen losses were reduced by 30-91% and total phosphorus losses were reduced by 65-76%, respectively, at the field scales under various energy crop production scenarios. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提议将边际土地作为生物燃料生产的可行土地资源。但是,多年生生物量生产对边缘土地的环境影响尚不清楚。这项研究定义了三种边际土地类型,并评估了它们在圣约瑟夫河流域的可利用性和生物燃料生产的潜力。使用农业政策/环境扩展器(APEX)模型评估了潜在影响。边缘土地的总面积估计为611 km(2),占流域的21.7%。边缘地区利用柳枝and和芒草可分别生产161和2.07亿升生物乙醇。当前将玉米/大豆生产中的边际土地转为柳枝and和芒草,减少了13.4-36.3%的水产量,并通过减少了27%-98%的土壤侵蚀改善了水质。同样,在不同能源作物生产情景下的田间规模下,总氮损失减少了30-91%,磷总损失减少了65-76%。 (C)2015 Elsevier Ltd.保留所有权利。

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