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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Sustainable feedstock for bioethanol production: Impact of spatial resolution on the design of a sustainable biomass supply-chain
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Sustainable feedstock for bioethanol production: Impact of spatial resolution on the design of a sustainable biomass supply-chain

机译:生物乙醇生产可持续原料:空间分辨率对可持续生物量供应链设计的影响

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摘要

This study assesses the role of spatial-resolution and spatial-variations in environmental impacts estimation and decision-making for corn-stover harvesting to produce biofuels. Geospatial corn-stover yields and environmental impacts [global warming potential (GWP), eutrophication, and soil-loss] dataset for two study areas in Wisconsin and Michigan were generated through Environmental Policy Integrated Climate (EPIC) model and aggregated at different spatial-resolutions (i.e., 100; 1000; 10,000 ha). For each spatial-resolution, decision-making was accomplished using an optimization routine to minimize different environmental impacts associated with harvesting stover to meet varied biomass demands. The results of the study showed that selective harvesting at higher-resolution (or lower-aggregation level) can result in significantly lower environmental impacts, especially at low stover demand levels. Additionally, the increased spatial resolution had more impact in minimizing the environmental impacts of corn stover harvest under a more variable landscape such as terrains and its influences are more pronounced for soil-loss and eutrophication potential compared to GWP.
机译:本研究评估了空间分辨率和空间变化的作用,环境影响估算和玉米秸秆收获的决策产生了生物燃料。地理空间玉米秸秆收益率和环境影响[全球变暖潜力(GWP),富营养化和土壤损失]威斯康星州和密歇根州的两个学习领域的数据集通过环境政策综合气候(EPIC)模型产生,并在不同的空间决议中汇总(即100; 1000; 10,000公顷)。对于每个空间分辨率,使用优化程序完成决策,以最大限度地减少与收获液体相关的不同环境影响,以满足不同的生物量需求。该研究的结果表明,在更高分辨率(或低聚集水平)下选择性收获可能导致对环境的影响显着降低,特别是在低橄榄肉需求水平下。此外,增加的空间分辨率对最小化玉米秸秆收获的环境影响更大,在更可变的景观中,如地形,与GWP相比,土壤损失和富营养化潜力更加明显。

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