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Indicative energy technology assessment of hydrogen processing from biogenic municipal waste

机译:生物城垃圾氢气加工的指示性能源技术评价

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An indicative appraisal has been undertaken of a combined Anaerobic Digestion and Steam Methane Reforming process to produce sustainable hydrogen from organic waste. The anaerobic digestion plant was based on the plant in Tilburg (The Netherlands), and was modelled from the kerbside organic waste collections through to methane production. Data on biogenic waste was obtained from a collection trial in a municipal area in the UK. This was scaled-up to match that of a Tilburg-like anaerobic digestion plant. The waste collection trials enabled the catchment area for an anaerobic digestion plant on a commercial scale to be estimated. A thermodynamic evaluation of the combined process included energy and exergy analysis in order to determine the efficiency of each process, as well as to identify the areas that lead to inefficiencies. The overall energy efficiency was 75% and the overall exergy efficiency was 60%. The main energy losses were associated with compressor inefficiencies. In contrast, the main exergy consumption was found to be due to the fermentation in the digestion tanks. Other hydrogen process efficiencies vary from 21% to 86%, with the higher efficiencies belonging to non-renewable processes. However, the sustainable hydrogen produced comes from entirely renewable sources (biogenic waste) and has the benefit of near-zero carbon emissions in contrast to fossil fuels. Finally, the case study included an indicative financial assessment of the collection to processing chain. A discounted payback period of less than 20 years was estimated with a modest annual charge for householders.
机译:已经对厌氧消化和蒸汽甲烷重整过程进行了一种指示性评估,以产生来自有机废物的可持续氢气。厌氧消化植物基于蒂尔堡(荷兰)的植物,并从Cherbside有机废物收集模型通过甲烷生产。关于生物废物的数据是从英国市区的收集试验中获得的。这是扩大的,以匹配蒂尔堡样厌氧消化植物的匹配。废物收集试验使厌氧消化厂的集水区以估计的商业规模。组合过程的热力学评估包括能量和漏洞分析,以确定每个过程的效率,以及识别导致效率低下的区域。整体能源效率为75%,总体高效效率为60%。主要能量损失与压缩机效率低相关。相比之下,发现主要的漏光消耗是由于消化罐中的发酵。其他氢气工艺效率从21%变化至86%,效率较高,属于不可再生过程。然而,所产生的可持续氢来自完全可再生的来源(生物废物),与化石燃料相比,近零的碳排放有益。最后,案例研究包括对处理链收集的指示性财务评估。估计折扣投资回收期不到20年,为住户的年收费适中。

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