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Using Grass Cuttings from Sports Fields for Anaerobic Digestion and Combustion

机译:使用运动场上的草屑进行厌氧消化和燃烧

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摘要

Sports fields provide a recreation space for citizens, but also generate grass biomass, which is cut weekly during the main seasons and therefore could be used in energy generation (combustion or anaerobic digestion). To evaluate the technical suitability of the grass cuttings, silage was produced from four sports fields during one vegetation period and investigated for relevant properties. Potential methane yield was determined with batch tests. Mean methane yield was 291.86 lN·kg−1 VSadded (VS, volatile solid). Neutral detergent fiber concentration was low (44.47% DM, dry matter), yet mineral concentration was high in comparison to grass types cut at a lower frequency. Concentrations of Cl, N, and S, which may lead to unfavorable emissions, fouling, and corrosion during combustion, were too high for an unproblematic combustion process. This was still the case even after applying a mineral-reducing pretreatment, which generates a fiber-rich press cake and a press fluid rich in easy soluble substances. Digestion of the press fluid led to methane yields of 340.10 lN·kg−1 VSadded and the press cake had a higher heating value of 19.61 MJ·kg−1 DM, which is close to that of coniferous wood. It can be concluded that biomass from sports fields could be a suitable co-substrate in bio-energy generation.
机译:运动场不仅为公民提供了休闲空间,还产生了草类生物质,在主要季节每周都会对其进行砍伐,因此可用于能源生产(燃烧或厌氧消化)。为了评估草屑的技术适用性,在一个植被时期从四个运动场生产了青贮饲料,并对其相关性能进行了研究。甲烷的潜在产量通过分批测试确定。甲烷平均产量为291.86 lN·kg-1 VS添加(VS,挥发性固体)。与以较低频率切割的草类型相比,中性洗涤剂纤维浓度低(44.47%干物质,干物质),但矿物质浓度高。对于无问题的燃烧过程,可能导致不利的排放,结垢和腐蚀的Cl,N和S浓度过高。即使在应用了减少矿物质的预处理之后,情况仍然如此,这会产生富含纤维的压榨饼和富含易溶物质的压榨液。压榨液的消化导致甲烷产量增加了340.10 lN·kg-1 VS,压滤饼的热值更高,为19.61 MJ·kg-1 DM,接近针叶木。可以得出结论,来自运动场的生物质可能是生物能源生产中合适的共同基质。

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