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A strategic impact assessment of hydropower plants in alpine and non-alpine areas of Europe

机译:欧洲高山地区水电植物的战略影响评价

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Hydropower is the widely used source of clean energy which includes some hazardous emissions that affect human health, ecosystems, and resources. However, in spite of an enormous amount of hydropower generation in Europe, no research has been carried out in evaluating the hazardous emissions from the plants located in alpine and non-alpine areas. Therefore, this paper will analyse the comparative environmental impacts of hydropower plants in alpine and non-alpine areas of Europe by a systematic life-cycle assessment (LCA) approach. The impacts are estimated by the ReCiPe 2016, Impact 2002 +, Eco-points 97 methods under a number of effect-assessing indicators such as global warming, ozone formation, eco-toxicity, water consumption, acidification, eutrophication, ionizing radiation, carcinogenic radiation, ozone depletion, and land use. Moreover, the fossil fuel -based power consumptions and the greenhouse-gas emissions in the life-cycle of hydropower plants in both locations are estimated using the Cumulative Energy Demand (CED) and the Intergovernmental Panel on Climate Change (IPCC) methods, respectively. The outcomes reveal that hydropower plants of alpine regions offer a better environmental profile for the global-warming indicator (2.97 x 10(-5) kg CO2-eq/MJ) than non-alpine plants (3.92 x 10(-4) kg CO2-eq/MJ), but the effects are nearly identical for the other indicators. Overall, the hydropower plants of non-alpine regions are responsible for climate change with a rate 10 times as high as for alpine ones. The findings of this research will play a pivotal role in promoting sustainable production of hydropower, especially the full potentials of the alpine region, and thus leading towards environmentally friendly clean renewable electricity generation.
机译:水电是广泛应用的清洁能源来源,包括一些影响人类健康,生态系统和资源的危险排放。然而,尽管欧洲欧洲有大量的水电站,但在评估位于高山和非高山地区的植物的危险排放方面没有进行任何研究。因此,本文将通过系统生命周期评估(LCA)方法分析欧洲高山和非高山地区水电植物的比较环境影响。估计的影响2016年,影响2002年+,生态点97方法在全球变暖,臭氧地层,生态毒性,水消耗,酸化,富营养化,电离辐射,致癌辐射等效应评估指标下。 ,臭氧耗尽,土地使用。此外,使用累积能源需求(CED)和气候变化(IPCC)方法的累积能源(IPCC)方法估计了化石燃料的功耗和水电站生命周期中的温室气体排放。结果表明,高山地区的水电站为全球变暖指示剂(2.97×10(-5)kg CO2-eq / mj)提供了比非高山植物(3.92×10(-4)kg二氧化碳(3.92×10) -eq / mj),但效果几乎与其他指标相同。总的来说,非高山地区的水电站负责气候变化,其速率为高于阿尔卑斯山的速度。该研究的结果将在促进水电的可持续生产方面发挥关键作用,特别是高山地区的全部潜力,从而导致环保的清洁可再生发电。

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