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首页> 外文期刊>The Science of the Total Environment >Life Cycle Assessment of electricity production from refuse derived fuel: A case study in Italy
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Life Cycle Assessment of electricity production from refuse derived fuel: A case study in Italy

机译:垃圾衍生燃料的电力生产生命周期评估 - 以意大利为例

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Biomasses and bio-waste have an important role in decarbonizing the European energy mix, the latter contributing to the transition towards a circular economy. In particular, Refuse Derived Fuel (RFD) - a biofuel obtained from dry residue of waste - appears a really interesting energy option. In this framework this study aims at assessing the environmental profile of electricity generation from RDF in Italy, comparing two different kinds of RDF production and combustion plants. The functional unit is 1 kWh of net electricity from RDF delivered to the grid. Two Italian plants are examined: one located in Ravenna (RDF is produced in a direct flow treatment plant) and the other one in Bergamo (RDF is produced in a unique flow treatment plant and electricity is generated in a cogenerator). Results show that, comparing the plants, it is not possible to identify an option for RDF production or electricity generation characterized by lowest impacts for all the examined impact categories. However, regeneration process and the avoided burdens due to the valorisation of ferrous metals and dry fractions during RDF production can reduce most of the environmental impacts. A dominance analysis reveals that chimney direct emissions generated during RDF combustion significantly contribute to some impact categories, as well as electricity consumption during RDF production. Furthermore, disposal of incineration wastes is a relevant contributor to human toxicity and freshwater eutrophication. The eco-profile of electricity from RDF is compared with electricity from the Italian grid and from multi-Si PV. The comparison highlights that electricity from RDF performs worse for relevant environmental impact categories such as climate change, human toxicity and photochemical oxidant formation. On the other hand, electricity from RDF performs better than electricity from the grid and from photovoltaic for resource depletion, an impact category of growing importance in the framework of circular economy.
机译:生物量和生物废物在脱碳化欧洲能源混合中具有重要作用,后者导致朝向循环经济的过渡。特别是,垃圾衍生燃料(RFD) - 从废物残留物中获得的生物燃料 - 看起来是一个非常有趣的能量选择。在本框架中,本研究旨在评估意大利RDF的电力生成的环境简介,比较两种不同的RDF生产和燃烧植物。功能单元是从RDF输送到电网的净电量1千瓦时。检查了两种意大利植物:位于拉韦纳(RDF在直接流动处理厂生产)中的一个,另一个在贝加莫(RDF在独特的流动处理厂生产中,在胆固醇中产生)。结果表明,比较植物,不可能识别RDF生产或发电的选项,其特征在于所有检查的影响类别的最低影响。然而,再生过程和由于RDF生产中的黑色金属和干馏的储存而避免的负担可以减少大部分环境影响。优势分析表明,在RDF燃烧期间产生的烟囱直接排放显着促进了一些影响类别,以及在RDF生产过程中的电力消耗。此外,焚烧废物处理是对人类毒性和淡水富营养化的相关贡献者。将来自RDF的电力的eco-剖面与来自意大利网格的电力和多Si PV进行比较。比较突出显示来自RDF的电力对于相关的环境影响类别,诸如气候变化,人类毒性和光化学氧化氧化氧化剂形成的情况下表现更糟。另一方面,RDF的电力比来自电网的电力更好,从电网和循环经济框架中越来越重要的影响类别。

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