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Environmental sustainability assessment of hydropower plant in Europe using life cycle assessment

机译:利用生命周期评估的欧洲水电站环境可持续性评估

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Hydropower is the oldest and most common type of renewable source of electricity available on this planet. The end of life process of hydropower plant have significant environmental impacts, which needs to be identified and minimized to ensure an environment friendly power generation. However, identifying the environmental impacts and health hazards are very little explored in the hydropower processing routes despite a significant quantity of production worldwide. This paper highlight the life-cycle environmental impact assessment of the reservoir based hydropower generation system located in alpine and non-alpine region of Europe, addressing their ecological effects by the ReCiPe and CML methods under several impact-assessment categories such as human health, ecosystems, global warming potential, acidification potential, etc. The Australasian life-cycle inventory database and SimaPro software are utilized to accumulate life-cycle inventory dataset and to evaluate the impacts. The results reveal that plants of alpine region offer superior environmental performance for couple of considered categories: global warming and photochemical oxidation, whilst in the other cases the outcomes are almost similar. Results obtained from this study will take part an important role in promoting sustainable generation of hydropower, and thus towards environment friendly energy production.
机译:水电是这个星球上最古老,最常见的可再生电源。水电站生命过程的结束具有显着的环境影响,需要识别和最小化,以确保环保发电。然而,尽管全球大量生产,但水电处理路线探索了环境影响和健康危害。本文突出了位于欧洲高山和非高山地区的水库水电站系统的生命周期环境影响评估,通过诸如人类健康等几种影响评估类别下的食谱和CML方法解决了其生态影响,全球变暖潜力,酸化潜力等。澳大利亚生命周期库存数据库和司马广播软件用于累积生命周期库存数据集并评估影响。结果表明,高山地区的植物为几个考虑的类别提供了卓越的环境性能:全球变暖和光化学氧化,而在其他情况下,结果几乎相似。本研究获得的结果将在促进水电的可持续发电方面取得重要作用,从而朝着环保型能源生产。

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