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Sustainable Energy Transitions: Overcoming Negative Externalities

机译:可持续能源转型:克服负面的外部性

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摘要

Nowadays the world energy system faces numerous transitions and shifts of the existing socio-technical regimes towards higher sustainability. Along with it, the sustainable transitions are often being postponed, slowed down or rejected to avoid negative externalities that could threaten the system stability. In this study, we aim to reach the deeper understanding of the externalities of energy transitions and the vulnerability of energy systems under the influence of negative externalities caused by sustainable energy transitions. Using the Externality theory (Baumol, Oates), Sociotechnical transition theory (Geels), as well as Energy sustainability Trilemma Method for the evaluation of the sustainability of energy systems we argue that such externalities need to be treated (internalized, avoided) by special policy measures other than common (classical) ways which may cause slowing down of sustainability transitions and make extra barriers for them. Transitions to more clean and low-carbon energy systems using energy technologies such as solar, wind, small hydro, biomass, waste management, e-vehicles are in the scope of this paper. It classifies the wide range of policy methods (classical and new) being applied separately and simultaneously, and analyses their application in energy policies designing aimed to combat negative externalities of energy sustainability transitions worldwide, so they might be minimized by properly tailored energy policy in each particular case.
机译:如今,世界能源体系面临着诸多的过渡和向更高的可持续性现有的社会技术体制的转变。随着它,可持续的转变常常被推迟,减慢或拒绝,以避免可能威胁系统的稳定性负外部性。在这项研究中,我们的目标是达到能量转换的外部性更深入的了解和能源系统引起的可持续能源过渡的负外部性的影响下,该漏洞。使用外部性理论(鲍莫尔,奥茨),社会技术变迁理论(Geels),以及能源可持续发展的三元悖论法能源系统的可持续性的评估,我们认为,这种外部性需要通过特殊的政策来处理(内化,避免)措施比这可能会导致持续放缓过渡下来,使他们更多障碍常见(古典)方式等。转变到诸如太阳能,风能,水电小,生物质,废物管理使用能源技术更清洁和低碳能源系统,电子车辆是在本文的范围。它分类被分开,同时应用广泛的策略方法(经典的和新的),并分析了它们在能源政策的应用程序设计的目的是能源可持续发展转变战斗力负外部世界各地,所以他们可能在每个正常量身定做的能源政策来最小化特殊案例。

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