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首页> 外文期刊>Biomass & bioenergy >Development of switchgrass (Panicum virgatum) as a bioenergy feedstock in the United States
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Development of switchgrass (Panicum virgatum) as a bioenergy feedstock in the United States

机译:在美国开发柳枝((Panicum virgatum)作为生物能源原料

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摘要

A 10-year US Department of Energy-sponsored research program designed to evaluate and develop switchgrass (Panicum virgatum), a native perennial warm-season grass, as a dedicated energy crop is reviewed. The programmatic objectives were to identify the best varieties and management practices to optimize productivity, while developing an understanding of the basis for long-term improvement of switchgrass through breeding and sustainable production in conventional agroecosystems. This research has reduced the projected production cost of switchgrass by about 25% ($8-9 Mg~(-1)) through yield increases of about 50% achieved through selection of the best regionally adapted varieties; through optimizing cutting frequency and timing; and by reducing the level (by about 40%) and timing of nitrogen fertilization. Breeding research has made further gains in productivity of switchgrass that exceed the historical rate of yield improvement of corn. Studies of soil carbon storage under switchgrass indicate significant carbon sequestration will occur in soils that will improve soil productivity and nutrient cycling and can substantially augment greenhouse gas reductions associated with substituting renewable energy for fossil energy. Collaborative research with industry has included fuel production and handling in power production, herbicide testing and licensing, release of new cultivars, and genetic modifications for chemical coproduct enhancement. Economically based life cycle analyses based on this research suggest that switchgrass produced for energy will compete favorably both as an agricultural crop and as fuel for industry.
机译:美国能源部赞助的一项为期十年的研究计划,旨在评估和开发柳枝((Panicum virgatum)(一种多年生的暖季草),并专门研究能源作物。该计划的目标是确定最佳品种和管理方法,以优化生产力,同时加深对常规农业生态系统中育种和可持续生产对柳枝long长期改良基础的理解。通过选择最佳的区域适应品种,产量提高了约50%,这项研究已将柳枝project的预计生产成本降低了约25%($ 8-9 Mg〜(-1))。通过优化切割频率和时间;并通过减少氮肥施用量(减少约40%)和时间。育种研究使柳枝productivity的生产力进一步提高,超过了玉米单产提高的历史记录。柳枝switch在土壤碳储量方面的研究表明,土壤中将发生大量的碳固存,这将提高土壤生产力和养分循环,并可以大大增加与用可再生能源替代化石能源相关的温室气体减排量。与工业界的合作研究包括发电中的燃料生产和处理,除草剂测试和许可,新品种的发布以及用于化学副产物增强的基因改造。基于这项研究的基于经济的生命周期分析表明,为能源生产的柳枝as既可以作为农业作物又可以作为工业燃料而竞争。

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