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Improving the energy balance of grass-based anaerobic digestion through combined harvesting and pretreatment

机译:通过组合收获和预处理改善基于草厌氧消化的能量平衡

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An important challenge that has to be addressed to achieve sustainable anaerobic digestion of lignocellulosic substrates is the development of energy and cost efficient pretreatment methods. Technologies orientated to simultaneously harvest and mechanically pretreat the biomass at the field could meet these criteria as they can potentially reduce the energy losses. The objective of this study was to elucidate the effect of two full-scale harvesting machines to enhance the biogas production and subsequently, improve energy balance. The performances of Disc-mower and Excoriator were assessed on meadow and cultivated grass silages. The results showed that relatively high methane production can be achieved from meadow and cultivated grass harvested in different seasons. The findings indicated that the bioenergy production can be improved based on the selection of the appropriate harvesting technology. More specifically, Excoriator, which cuts and subsequently applies shearing forces on harvested biomass, enhanced the methane production up to 10% and the overall energy budget was improved proportionally to the driving speed increase. (C) 2016 Elsevier Ltd. All rights reserved.
机译:必须解决的重要挑战,以实现木质纤维素基材的可持续厌氧消化是能源和成本效率的预处理方法的发展。定向为同时收获和机械预处理现场生物质的技术可以满足这些标准,因为它们可能会降低能量损失。本研究的目的是阐明两个全规模收集机的效果,以提高沼气生产,随后提高能量平衡。在草地和栽培草青贮饲料中评估了盘式割草机和偶发剂的性能。结果表明,在不同季节中收获的草地和栽培草地可以实现相对高的甲烷产量。研究结果表明,基于选择适当的收获技术,可以提高生物能量的生产。更具体地,切割和随后将剪切力施加在收获的生物质上的映射力,增强了高达10%的甲烷产量,并且整体能量预算与驱动速度增加成比例地提高。 (c)2016 Elsevier Ltd.保留所有权利。

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