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首页> 外文期刊>Environmental Research Letters >Biofuel, land and water: maize, switchgrass or Miscanthus?
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Biofuel, land and water: maize, switchgrass or Miscanthus?

机译:生物燃料,土地和水:玉米,柳枝or或芒草?

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The productive cellulosic crops switchgrass and Miscanthus are considered as viable biofuel sources. To meet the 2022 national biofuel target mandate, actions must be taken, e.g., maize cultivation must be intensified and expanded, and other biofuel crops (switchgrass and Miscanthus) must be cultivated. This raises questions on the use efficiencies of land and water; to date, the demand on these resources to meet the national biofuel target has rarely been analyzed. Here, we present a data-model assimilation analysis, assuming that maize, switchgrass and Miscanthus will be grown on currently available croplands in the US. Model simulations suggest that maize can produce 3.0–5.4?kiloliters (kl) of ethanol for every hectare of land, depending on the feedstock to ethanol conversion efficiency; Miscanthus has more than twice the biofuel production capacity relative to maize, and switchgrass is the least productive of the three potential sources of ethanol. To meet the biofuel target, about 26.5 million hectares of land and over 90?km3 of water (of evapotranspiration) are needed if maize grain alone is used. If Miscanthus was substituted for maize, the process would save half of the land and one third of the water. With more advanced biofuel conversion technology for Miscanthus, only nine million hectares of land and 45?km3 of water would probably meet the national target. Miscanthus could be a good alternative biofuel crop to maize due to its significantly lower demand for land and water on a per unit of ethanol basis.
机译:生产性纤维素作物的柳枝and和芒草被认为是可行的生物燃料来源。为了达到2022年国家生物燃料目标任务,必须采取行动,例如必须加强和扩大玉米种植,并必须种植其他生物燃料作物(柳枝and和芒草)。这就对土地和水的利用效率提出了疑问;迄今为止,很少分析对满足国家生物燃料目标的这些资源的需求。在这里,我们提出一个数据模型同化分析,假设玉米,柳枝and和芒草将在美国目前可用的农田上种植。模型模拟表明,玉米每公顷土地可产生3.0–5.4千升(kl)的乙醇,具体取决于原料转化为乙醇的效率。芒草的生物燃料生产能力是玉米的两倍以上,柳枝is是三种潜在乙醇来源中产量最低的。如果仅使用玉米谷物,就需要达到约2650万公顷的土地和超过90?km3的水(蒸散)以实现生物燃料的目标。如果用芒草代替玉米,则该过程将节省一半的土地和三分之一的水。有了用于芒草的更先进的生物燃料转化技术,只有900万公顷的土地和45?km3的水可能会达到国家目标。由于芒scan对单位土地乙醇的土地和水的需求大大降低,因此它可以成为玉米的替代生物燃料作物。

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