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首页> 外文期刊>Journal of the American Water Resources Association >Influence of Bioenergy Crop Production and Climate Change on Ecosystem Services
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Influence of Bioenergy Crop Production and Climate Change on Ecosystem Services

机译:生物能源作物生产和气候变化对生态系统服务的影响

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Land use change can significantly affect the provision of ecosystem services and the effects could be exacerbated by projected climate change. We quantify ecosystem services of bioenergy-based land use change and estimate the potential changes of ecosystem services due to climate change projections. We considered 17 bioenergy-based scenarios with Miscanthus, switchgrass, and corn stover as candidate bioenergy feedstock. Soil and Water Assessment Tool simulations of biomass/grain yield, hydrology, and water quality were used to quantify ecosystem services freshwater provision (FWPI), food (FPI) and fuel provision, erosion regulation (ERI), and flood regulation (FRI). Nine climate projections from Coupled Model Intercomparison Project phase-3 were used to quantify the potential climate change variability. Overall, ecosystem services of heavily row cropped Wildcat Creek watershed were lower than St. Joseph River watershed which had more forested and perennial pasture lands. The provision of ecosystem services for both study watersheds were improved with bioenergy production scenarios. Miscanthus in marginal lands of Wildcat Creek (9% of total area) increased FWPI by 27% and ERI by 14% and decreased FPI by 12% from the baseline. For St. Joseph watershed, Miscanthus in marginal lands (18% of total area) improved FWPI by 87% and ERI by 23% while decreasing FPI by 46%. The relative impacts of land use change were considerably larger than climate change impacts in this paper. Editor's note: This paper is part of the featured series on SWAT Applications for Emerging Hydrologic and Water Quality Challenges. See the February 2017 issue for the introduction and background to the series.
机译:土地用途的变化会严重影响生态系统服务的提供,预计的气候变化会加剧这种影响。我们量化基于生物能源的土地利用变化的生态系统服务,并估算由于气候变化预测而导致的生态系统服务的潜在变化。我们考虑了以芒草,柳枝switch和玉米秸秆为候选生物能源原料的17种基于生物能源的情景。利用土壤和水评估工具对生物量/粮食产量,水文学和水质的模拟来量化生态系统服务的淡水供应(FWPI),粮食(FPI)和燃料供应,侵蚀调节(ERI)和洪水调节(FRI)。来自耦合模型比较项目第3阶段的9个气候预测用于量化潜在的气候变化变异性。总体而言,重排种植的野猫溪流域的生态系统服务水平低于圣约瑟夫河流域,后者拥有更多的森林和多年生牧场。通过生物能源生产情景,为两个研究流域提供的生态系统服务得到了改善。与基线相比,野猫溪边缘地区的芒草(占总面积的9%)使FWPI增加了27%,ERI增加了14%,FPI减少了12%。对于圣约瑟夫流域,边缘土地上的芒草(占总面积的18%)使FWPI提高了87%,ERI提高了23%,同时FPI降低了46%。在本文中,土地利用变化的相对影响远大于气候变化的影响。编者注:本文是针对新兴水文和水质挑战的SWAT应用程序精选系列的一部分。有关该系列的简介和背景信息,请参见2017年2月号。

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