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发电的社会环境外部性内化的生命周期后果。

Life-cycle consequences of internalising socio-environmental externalities of power generation.

机构信息

Instituto IMDEA Energía, Systems Analysis Unit, Av. Ramón de la Sagra 3, 28935 Móstoles, Spain.

Instituto IMDEA Energía, Systems Analysis Unit, Av. Ramón de la Sagra 3, 28935 Móstoles, Spain.

出版信息

Sci Total Environ. 2018 Jan 15;612:386-391. doi: 10.1016/j.scitotenv.2017.08.231. Epub 2017 Sep 1.

Abstract

Current national energy sectors are generally unsustainable. Within this context, energy policy-makers face the need to move from economy- to sustainability-oriented schemes. Beyond the integration of the sustainability concept into energy policies through the implementation of techno-economic, environmental and/or social restrictions, other approaches propose the use of externalities -based on life-cycle emissions- to deeply take into account sustainability in the design of the future energy system. In this sense, this work evaluates the consequences of internalising socio-environmental externalities associated with power generation. Besides the calculation of external costs of power generation technologies and their implementation in an energy systems optimisation model for Spain, the life-cycle consequences of this internalisation are explored. This involves the prospective analysis of the evolution of the sustainability indicators on which the externalities are founded, i.e. climate change and human health. For the first time, this is done by endogenously integrating the life-cycle indicators into the energy systems optimisation model. The results show that the internalisation of externalities highly influences the evolution of the electricity production mix as well as the corresponding life-cycle profile, hastening the decarbonisation of the power generation system and thus leading to a significant decrease in life-cycle impacts. This effect is observed both when internalising only climate change externalities and when internalising additionally human health external costs.

摘要

当前,各国的能源部门普遍难以为继。在此背景下,能源政策制定者需要将经济导向型方案转变为可持续发展导向型方案。除了通过实施技术经济、环境和/或社会限制将可持续性概念纳入能源政策之外,其他方法还提出利用基于生命周期排放的外部性来深入考虑未来能源系统设计中的可持续性。从这个意义上说,这项工作评估了将与发电相关的社会环境外部性内部化的后果。除了计算发电技术的外部成本并将其应用于西班牙的能源系统优化模型之外,还探讨了这种内化的生命周期后果。这涉及到对外部性所依据的可持续性指标演变的前瞻性分析,即气候变化和人类健康。这是首次通过将生命周期指标内生化到能源系统优化模型中来实现这一目标。结果表明,外部性的内化会强烈影响电力生产组合的演变以及相应的生命周期特征,从而加速发电系统的脱碳,从而显著降低生命周期影响。当仅内化气候变化外部性或另外内化人类健康外部成本时,都会观察到这种效果。

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