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Towards sustainable energy-crop cultivation: feasibility of biomethane production using a double-cropping system with various sorghum phenotypes

机译:朝着可持续的能量作物培养:使用具有各种高粱表型的双重种植系统的生物甲烷生产的可行性

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摘要

To achieve sustainable energy crop production, energy crops should not compete for land against feed and food crops. One option for sustainable energy-crop cultivation is the use of double cropping systems with minimum tillage use and digestate as natural fertilizer, where, in the same growing season, a second crop for biomethane production is planted after a first crop used for feed/food. Different sorghum phenotypes were evaluated in the present study as first and second crops in a double cropping system. A principal component analysis of the various sorghum phenotypes showed that starch content positively affected methane production. However, sorghum chemical composition did not influence the profitability of bioenergy production as much as the total solid biomass yields of the different sorghum phenotypes. The highest total solid biomass productive sorghum phenotype led to the highest methane hectare yield. (c) 2020 Society of Chemical Industry and John Wiley & Sons, Ltd
机译:为实现可持续的能源作物生产,能源作物不应争夺饲料和粮食作物的土地。 可持续能源作物培养的一种选择是使用双重种植系统,以最低耕作使用和消化为天然肥料,在同一生长季节,在用于饲料/食物的第一作物后种植生物甲烷生产的第二作物。 。 在本研究中评估不同的高粱表型作为双重种植系统中的第一和第二作物。 各种高粱表型的主要成分分析表明,淀粉含量积极影响甲烷生产。 然而,高粱化学成分没有影响生物能量生产的盈利能力和不同高粱表型的总固体生物量产量一样多。 最高全固体生物质生产高粱表型导致最高的甲烷公顷产量。 (c)2020化学工业协会和约翰瓦里和儿子有限公司

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