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Double-cropping sorghum for biomass production.

机译:高产双季高粱。

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摘要

The production of biomass using double-cropping systems may have the advantage of producing more feedstock for refineries by extending the growing season, while also providing many environmental benefits, such as the reduction of erosion. Past research indicates that there may be a genotypic effect for the suitability of a crop for use within these systems. There has been little research conducted to explicitly examine this effect in sorghum, despite the crop's diverse genetic background. The objective of this study was to evaluate the biomass production of twelve sorghum genotypes grown as a sole crop and within a double-cropping system with triticale. It was shown that both triticale and sorghum are acceptable as potential feedstocks for ethanol conversion. Because of adverse weather conditions, the chemical composition of both crops varied over all study environments and was the result of the differences in maturity at the time of harvest. Although genotypes within the single-cropping system produced higher biomass system yields than the double-cropping systems, the difference was not significant for several genotypes. These sorghums were characterized as being earlier maturing varieties and had nearly maximized dry matter production at the earlier harvest of the double-cropping system. Thus, the additional biomass that the crop would have accrued was capable of being supplemented by the growth of the triticale. However, the theoretical ethanol yields were significantly higher within the single-cropping system for these cultivars. This indicates that although it could offset any loss in dry matter production, the triticale crop was of lower quality for conversion to ethanol compared to the sorghum biomass. The double-cropping systems were more costly to produce than the single-cropped sorghums however, there are favorable environmental benefits associated with the double-cropped sorghum that may warrant the additional costs.
机译:使用双作系统生产生物质的优势可能是通过延长生长期来为精炼厂生产更多的原料,同时还提供了许多环境效益,例如减少了侵蚀。过去的研究表明,在这些系统中使用作物的适宜性可能有基因型效应。尽管农作物具有不同的遗传背景,但几乎没有进行任何研究来明确检查高粱的这种作用。这项研究的目的是评估十二种高粱基因型的生物量生产,这些基因型是作为单一作物并在黑小麦的双作系统中生长的。结果表明,黑小麦和高粱都可以用作乙醇转化的潜在原料。由于恶劣的天气条件,两种作物的化学成分在所有研究环境中都不同,这是收获时成熟度差异的结果。尽管单作系统中的基因型比双作系统产生的生物量更高,但对于几种基因型而言,差异并不显着。这些高粱的特征是早熟,在早熟的双作系统中干物质的产量几乎最大化。因此,小黑麦的生长可以补充作物原本可以收获的额外生物量。然而,这些品种的单作系统中理论乙醇产量明显更高。这表明尽管黑小麦作物可以抵消干物质生产中的任何损失,但与高粱生物质相比,其转化为乙醇的质量较低。与单作高粱相比,双作系统的生产成本更高,但是,双作高粱具有有利的环境效益,可能会带来额外的成本。

著录项

  • 作者

    Goff, Ben Michael.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Agriculture Agronomy.
  • 学位 M.S.
  • 年度 2010
  • 页码 111 p.
  • 总页数 111
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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