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Biogasification of plant and animal biomass substrate

机译:植物和动物生物质基材的生物化

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The insufficient management and utilisation of permanent grassland (PG) can result in a range of negative phenomena in vegetation and landscape development. The production of energy from biomass is a progressive way in which non-utilised agriculturalland can be used. The paper presents results recorded during the co-fermentation of cattle slurry with ensiled grass or a grass/clover mixture or lucerne silage. During the experimental measurements, the input substrate composition, the quantity and composition of the produced biogas, and the conditions of anaerobic digestion in the fermentor were monitored. The results were compared with those of pure cattle slurry fermentation as a reference sample. It was found that grass or grass/legume silage werevery suitable co-fermentation components for biogas production. The co-fermentation of cattle slurry mixed with 20% grass or mixed grass/clover silage or 40%) lucerne silage resulted in a 10.8% increase in methane production, while the production of biogas was higher by 273%.
机译:永久草地(PG)的管理和利用不足可能导致植被和景观发展中的一系列负现象。来自生物量的能量的生产是一种渐进式,可以使用未使用的农业。本文提出了在牛浆的共同发酵过程中记录的结果,与结束的草或草/三叶草混合物或甘氏青贮组织。在实验测量期间,监测输入底物组成,产生的沼气的数量和组成以及发酵罐中的厌氧消化的条件。将结果与纯牛浆料发酵作为参考样品进行比较。发现草或草/豆科植物青贮饲料含有适当的沼气生产的共发酵组分。牛浆料的共同发酵与20%草或混合草/三叶草或40%)甘塞组织导致甲烷生产增加10.8%,而沼气的生产较高273%。

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