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Dynamic life cycle assessment (LCA) of renewable energy technologies

机译:可再生能源技术的动态生命周期评估(LCA)

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Before new technologies enter the market, their environmental superiority over competing options must be asserted based on a life cycle approach. However, when applying the prevailing status-quo Life Cycle Assessment (LCA) approach to future renewable energy systems, one does not distinguish between impacts which are 'imported' into the system due to the 'background system' (e.g. due to supply of materials or final energy for the production of the energy system), and what is the improvement potential of these technologies compared to competitors (e.g. due to process and system innovations or diffusion effects). This paper investigates a dynamic approach towards the LCA of renewable energy technologies and proves that for all renewable energy chains, the inputs of finite energy resources and emissions of greenhouse gases are extremely low compared with the conventional system. With regard to the other environmental impacts the findings do not reveal any clear verdict for or against renewable energies. Future development will enable a further reduction of environmental impacts of renewable energy systems. Different factors are responsible for this development, such as progress with respect to technical parameters of energy converters, in particular, improved efficiency; emissions characteristics; increased lifetime, etc.; advances with regard to the production process of energy converters and fuels; and advances with regard to 'external' services originating from conventional energy and transport systems, for instance, improved electricity or process heat supply for system production and ecologically optimized transport systems for fuel transportation. The application of renewable energy sources might modify not only the background system, but also further downstream aspects, such as consumer behavior. This effect is, however, strongly context and technology dependent.
机译:在新技术进入市场之前,必须基于生命周期方法来断言其在环境方面优于竞争产品的优势。但是,在将流行的现状生命周期评估(LCA)方法应用于未来的可再生能源系统时,不能区分由于“背景系统”(例如,由于材料供应)而“导入”到系统中的影响或用于能源系统生产的最终能源),以及与竞争对手相比,这些技术的改进潜力是什么(例如,由于工艺和系统创新或扩散效应)。本文研究了一种针对可再生能源技术的生命周期评估的动态方法,并证明与传统系统相比,对于所有可再生能源链而言,有限能源资源的输入和温室气体的排放量都非常低。关于其他对环境的影响,调查结果并未显示出任何明确的支持或反对可再生能源的结论。未来的发展将能够进一步减少可再生能源系统对环境的影响。不同的因素导致了这种发展,例如能量转换器技术参数的进步,特别是效率的提高;排放特性;使用寿命延长等;能源转换器和燃料生产工艺方面的进步;以及源于常规能源和运输系统的“外部”服务的进步,例如,用于系统生产的改进的电力或过程供热,以及用于燃料运输的生态优化的运输系统。可再生能源的应用不仅可以修改后台系统,而且可以修改其他下游方面,例如消费者行为。但是,此效果在很大程度上取决于上下文和技术。

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