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Theoretical and unused potential for residual biomasses in the Emilia Romagna Region (Italy) through a revised and portable framework for their categorization

机译:通过修订的便携式分类框架,对艾米利亚·罗马涅地区(意大利)的残余生物质的理论和未利用潜力

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Global energy demand is lowering its growth, but it is still expected to increase by 30% between now and 2040. To decrease greenhouse gas emissions a shift to more sustainable renewable energy sources is fundamental. Among the renewable energy sources, biomasses already have the largest share in Europe and their future demand for biorefinery plants will increase at global level.This study provides a comprehensive and exportable categorization of the residual biomasses (RB) from different supply sectors. Thanks to the individual descriptive and quantitative parameters introduced in the paper, an estimate of the theoretical and techno-economic potential is presented for a well-industrialized, agricultural-oriented and environmentally advanced European Region. Results are presented as recoverable biogas or biomethane, considering also the seasonal availability.In a relatively small region like Emilia Romagna (Italy), 106 different types of residual biomasses belonging to 6 main groups have been characterized. Over half of the total residues come from the agro-industrial and food businesses (58) followed by the agricultural sector (33). The estimate reveals a theoretical potential of 3544 +/- 291 Gg/year of total solids for thermochemical valorisation and 3460 +/- 639 Gg/year of total solids suitable for biological treatment. In terms of unused potential, the quantities decrease respectively to 2120 +/- 298 and 915 +/- 167 Gg/year.The estimates indicate stable results over the years from 2014 to 2016. The seasonal availability shows two evident peaks from August to October, while a significant shortage is present from April to June for the residues suitable for thermochemical valorisation. The theoretical potential that can be obtained from the Region's residues corresponds to about 1.8-2.3 million TOE/year, corresponding to 13-17% of the total regional consumption. Unused residues contribute to 0.9-1.2 million TOE/year.
机译:全球能源需求正在降低其增长速度,但是从现在到2040年,全球能源需求仍有望增长30%。要减少温室气体排放,向更可持续的可再生能源转变是至关重要的。在可再生能源中,生物质已经在欧洲占有最大的份额,其对生物精炼厂的未来需求将在全球范围内增加。这项研究提供了来自不同供应部门的残余生物质的全面且可出口的分类。由于本文介绍了各个描述性和定量参数,因此对工业化程度高,以农业为导向和环境先进的欧洲地区的理论和技术经济潜力进行了估算。结果还以可回收沼气或沼气的形式给出,同时还考虑了季节可用性。在像艾米利亚·罗马涅(Emilia Romagna)(意大利)这样的相对较小的地区,已鉴定出属于6个主要类别的106种不同类型的残留生物质。残留总量的一半以上来自农工和食品企业(58),其次是农业部门(33)。估算表明,理论上潜力为热化学增值的总固含量为3544 +/- 291 Gg /年,适用于生物处理的总固含量为3460 +/- 639 Gg /年。就未利用的潜力而言,数量分别减少至2120 +/- 298和915 +/- 167 Gg /年。估计值表明,2014年至2016年的结果是稳定的。季节性供应量显示8月至10月出现两个明显的高峰,而从4月到6月,适用于热化学价衡的残留物严重短缺。从该地区的残渣中获得的理论潜力相当于每年约1.8-230万TOE,相当于该地区总消费量的13-17%。未使用的残留物每年贡献0.9-120万TOE。

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