Towards Real Energy Economics: Energy Policy Driven by Life-Cycle Carbon Emission

R. Kenny, C. Law, Joshua M. Pearce
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引用次数: 99

Abstract

Alternative energy technologies (AETs) have emerged as a solution to the challenge of simultaneously meeting rising electricity demand while reducing carbon emissions. However, as all AETs are responsible for some greenhouse gas (GHG) emissions during their construction, carbon emission "Ponzi Schemes" are currently possible, wherein an AET industry expands so quickly that the GHG emissions prevented by a given technology are negated to fabricate the next wave of AET deployment. In an era where there are physical constraints to the GHG emissions the climate can sustain in the short term this may be unacceptable. To provide quantitative solutions to this problem, this paper introduces the concept of dynamic carbon life-cycle analyses, which generate carbon-neutral growth rates. These conceptual tools become increasingly important as the world transitions to a low-carbon economy by reducing fossil fuel combustion. In choosing this method of evaluation it was possible to focus uniquely on reducing carbon emissions to the recommended levels by outlining the most carbon-effective approach to climate change mitigation. The results of using dynamic life-cycle analysis provide policy makers with standardized information that will drive the optimization of electricity generation for effective climate change mitigation.
走向真正的能源经济:生命周期碳排放驱动的能源政策
替代能源技术(AETs)已经成为解决同时满足不断增长的电力需求和减少碳排放的挑战的一种解决方案。然而,由于所有AET在其建设过程中都要对温室气体(GHG)排放负责,碳排放“庞氏骗局”目前是可能的,其中AET行业扩张得如此之快,以至于通过特定技术防止的温室气体排放被抵消,以制造下一波AET部署。在一个对温室气体排放有物理限制的时代,气候可以在短期内维持,这可能是不可接受的。为了定量解决这一问题,本文引入了动态碳生命周期分析的概念,该概念产生了碳中性增长率。随着世界向低碳经济转型,减少化石燃料的燃烧,这些概念性工具变得越来越重要。在选择这种评估方法时,可以通过概述缓解气候变化的最有效的碳排放方法,将重点放在将碳排放减少到建议水平上。使用动态生命周期分析的结果为决策者提供了标准化信息,这些信息将推动发电的优化,以有效缓解气候变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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