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Double-Cropping Sorghum for Biomass

机译:双季高粱生物量

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Double-cropping systems have been suggested as a way to increase annual dry matter production per hectare, while simultaneously delivering environmental benefits. Past research seems to indicate that there is a genotypic effect for the suitability of a crop for use within double-cropping systems; however, despite sorghum's [Sorghum bicolor (L.) Moench] diverse genetic background, there has not been a great deal of work done to explore this response for this crop. Twelve sorghum varieties were grown as sole crops and within a double-cropping system with winter triticale [x Triticosecale Wittmack] in central and northern Iowa. Results showed that although the single-cropping system produced slightly higher biomass yields, there were no significant differences in total production between the two systems for several of the sorghum varieties. These varieties were characterized as earlier maturing ones that had nearly maximized dry matter production at the time of harvest for the double-cropping system, and thus, any potential loss in sorghum yield was supplemented by the biomass production from the triticale crop. However when the chemical composition of the crops was considered, the theoretical ethanol yield of the single-cropping system was greater than the double-cropping system for all sorghum varieties. Although triticale was capable of offsetting any potential loss in dry matter, as an ethanol feedstock it was inferior to sorghum.
机译:有人建议采用双作系统,以增加每公顷每年的干物质产量,同时带来环境效益。过去的研究似乎表明,对作物在双作系统中使用的适宜性具有基因型效应。然而,尽管高粱[Sorghum bicolor(L.)Moench]的遗传背景多种多样,但尚未进行大量工作来探索这种作物的这种反应。在爱荷华州中部和北部,将十二个高粱品种作为唯一的农作物并在双季作物系统中进行了冬季黑小麦[x Triticosecale Wittmack]的种植。结果表明,尽管单作系统产生的生物量稍高,但对于一些高粱品种,两种系统的总产量没有显着差异。这些品种的特征是较早熟的品种,在双作系统收获时干物质的产量几乎达到最大,因此,黑小麦作物的生物量生产可以弥补高粱产量的任何潜在损失。但是,考虑到农作物的化学成分,对于所有高粱品种,单作系统的理论乙醇产量均高于双作系统。尽管小黑麦能够抵消干物质的任何潜在损失,但作为乙醇原料,它不如高粱。

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