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首页> 外文期刊>Resources, Conservation and Recycling >LCA of bioenergy chains in Piedmont (Italy): A case study to support public decision makers towards sustainability
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LCA of bioenergy chains in Piedmont (Italy): A case study to support public decision makers towards sustainability

机译:意大利皮埃蒙特(Piedmont)的生物能源链的生命周期评估(LCA):一个案例研究,以支持公共决策者实现可持续发展

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摘要

Given the booming of bioenergy plants under construction in Piedmont, in Northern Italy, Life Cycle Assessment (LCA) was used in order to assist public decision-makers during the evaluation of new bioenergy projects. Local administrators are in fact worried that public incentives granted to bioenergy producers, regardless of the overall environmental performance, might not encourage technological innovation and eco-efficiency, or bring unwanted indirect environmental effects. A detailed LCA of bioenergy production from dedicated crops (maize, sorghum, triticale and miscanthus) and manure through anaerobic digestion and combined heat and power generation was carried out. The LCA model was particularly focused on the end-of-life of digestate and site-specific data related to the impact of adopted energy conversion technologies. It was confirmed that bioenergy is not automatically synonymous with sustainable energy, as the differences in terms of environmental performance can be remarkable. EROI (Energy Return on Investment) index was estimated to be 3-5. The potential in terms of GHG saving depends on several factors and it is heavily influenced by the reference non-renewable energy to be substituted. End-of-life of digestate was found to be crucial for acidification and eutrophication, but also for GHG emissions. Finally, particulates equivalent emissions were found to be very large in comparison to modern natural gas power plants.
机译:考虑到意大利北部皮埃蒙特(Piedmont)正在建设的生物能源工厂的蓬勃发展,使用生命周期评估(LCA)来协助公共决策者评估新的生物能源项目。实际上,当地行政人员担心,授予生物能源生产者的公共激励措施,无论其总体环境绩效如何,都可能不会鼓励技术创新和生态效率,或带来不希望的间接环境影响。通过厌氧消化以及热电联产,对专用作物(玉米,高粱,黑小麦和黑麦)和粪便的生物能源生产进行了详细的生命周期评估。 LCA模型特别关注与采用的能量转换技术的影响有关的消化液和特定地点数据的寿命终止。可以肯定的是,生物能源并非自动成为可持续能源的同义词,因为环境绩效方面的差异可能非常明显。 EROI(能源投资回报)​​指数估计为3-5。节省温室气体的潜力取决于几个因素,它受到替代的参考不可再生能源的严重影响。发现消化物的寿命对于酸化和富营养化至关重要,但对温室气体排放也至关重要。最后,发现与现代天然气发电厂相比,当量颗粒物的排放量非常大。

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