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评估美国边际土地用于纤维素原料生产和碳固存的潜力。

Evaluating the Potential of Marginal Land for Cellulosic Feedstock Production and Carbon Sequestration in the United States.

机构信息

Department of Systems Engineering and Management, Air Force Institute of Technology , Wright-Patterson Air Force Base, Ohio 45433, United States.

Energy Resources Center, University of Illinois at Chicago , Chicago, Illinois 60607, United States.

出版信息

Environ Sci Technol. 2017 Jan 3;51(1):733-741. doi: 10.1021/acs.est.6b04189. Epub 2016 Dec 15.

Abstract

Land availability for growing feedstocks at scale is a crucial concern for the bioenergy industry. Feedstock production on land not well-suited to growing conventional crops, or marginal land, is often promoted as ideal, although there is a poor understanding of the qualities, quantity, and distribution of marginal lands in the United States. We examine the spatial distribution of land complying with several key marginal land definitions at the United States county, agro-ecological zone, and national scales, and compare the ability of both marginal land and land cover data sets to identify regions for feedstock production. We conclude that very few land parcels comply with multiple definitions of marginal land. Furthermore, to examine possible carbon-flow implications of feedstock production on land that could be considered marginal per multiple definitions, we model soil carbon changes upon transitions from marginal cropland, grassland, and cropland-pastureland to switchgrass production for three marginal land-rich counties. Our findings suggest that total soil organic carbon changes per county are small, and generally positive, and can influence life-cycle greenhouse gas emissions of switchgrass ethanol.

摘要

土地资源的可利用性对于规模化种植饲料作物来说是生物能源产业的一个关键关注点。在不适宜种植传统作物的土地或边际土地上生产饲料作物通常被认为是理想的选择,尽管人们对美国边际土地的质量、数量和分布情况了解甚少。我们在美国县、农业生态区和国家尺度上研究了符合几种关键边际土地定义的土地的空间分布,并比较了边际土地和土地覆盖数据集识别饲料作物生产区域的能力。我们的结论是,符合多种边际土地定义的土地很少。此外,为了研究根据多种定义可能将土地视为边际土地对饲料作物生产的碳流动的影响,我们对三个边际土地丰富的县的边际耕地、草地和耕地-牧草地向柳枝稷生产转变的土壤碳变化进行了建模。我们的研究结果表明,每个县的土壤有机碳总变化量较小,通常为正值,并且可能会影响柳枝稷乙醇的生命周期温室气体排放。

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