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Thermophysical and chemical properties of perennial energy crops depending on harvest period

机译:多年生能源作物的热物理和化学特性取决于收获期

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摘要

This paper presents analyses of the thermophysical and chemical properties of eleven perennial crop species harvested in one-year rotation cycles. The crops included four species grown for biomass in the form of straw, five species producing semi-wood biomass, and two species yielding wood biomass. The research comprised three consecutive crop harvests. In each harvesting season, biomass samples for analyses were taken on six dates at one-month intervals. Thermophysical and chemical properties of the biomass were significantly differentiated within the main experimental factors and their interactions. The biomass produced by Virginia mallow had the best quality parameters as solid fuel. In fact, it achieved the lowest water content and the highest lower heating value during all of the analyzed seasons and harvest dates. The biomass of the species yielding straw or semi-wood products attained better quality as solid fuel on later harvest dates. In turn, the quality of willow biomass remained practically unchanged between the harvest dates.
机译:本文介绍了在一年轮换周期中收获的11种多年生作物物种的热物理和化学性质的分析。作物包括四种以秸秆形式用于生物质生长的物种,五种产生半木材生物质的物种和两种产生木材生物质的物种。该研究包括三个连续的农作物收成。在每个收获季节,以一个月为间隔的六个日期采集用于分析的生物质样品。在主要的实验因素及其相互作用中,生物质的热物理和化学性质明显不同。弗吉尼亚锦葵所产生的生物质具有最佳的质量参数作为固体燃料。实际上,在所有分析的季节和收获日期中,它的水分含量最低,发热量最高。在以后的收获日期,生产秸秆或半木产品的物种的生物质作为固体燃料的质量更高。反过来,柳树生物量的质量在收获日期之间实际上保持不变。

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