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A 'Carbon Saving Multiplier' as an alternative to rebound in considering reduced energy supply chain requirements from energy efficiency?

机译:在考虑减少能源效率对能源供应链的要求时,是否可以使用“省碳乘数”替代反弹?

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摘要

A growing area of research into rebound effects from increased energy efficiency involves application of demand-driven input-output models to consider indirect energy consumption effects associated with re-spending decisions by households with reduced energy spending requirements. However, there is often a lack of clarity in applied studies as to how indirect effects involving energy use and/or carbon emissions in supply chains of both energy and non-energy goods and services have been calculated. We propose that more transparency for policymakers may be introduced by replacing consideration of what are often referred to as ‘indirect rebound’ effects with a simple carbon saving multiplier metric. We illustrate using results from a demand-driven input-output model that tracks supply chain activity at national and/or global level. We argue that this captures and conveys the same information on quantity adjustments in energy used in supply chain activity but does so in a manner that is more positive, transparent, understandable and useful for a policy audience. This is achieved by focusing (here via carbon emissions) on the net benefits of changes in different types of energy use at both household and supply chain levels when energy efficiency improves in households.
机译:越来越多的能源效率回弹效应研究涉及应用需求驱动的投入产出模型,以考虑与能源需求减少的家庭的再支出决策相关的间接能源消耗效应。但是,在应用研究中通常缺乏关于如何计算涉及能源和非能源商品和服务的供应链中的能源使用和/或碳排放的间接影响的明确性。我们建议,可以通过简单的碳节约乘数指标代替对通常称为“间接反弹”效应的考虑,从而为决策者引入更高的透明度。我们使用需求驱动的投入产出模型的结果进行说明,该模型跟踪国家和/或全球级别的供应链活动。我们认为,这可以捕获并传达有关供应链活动中使用的能源数量调整的相同信息,但这样做的方式对于政策目标受众而言更为积极,透明,可理解且有用。这可以通过(当这里通过碳排放)关注家庭能源效率提高时,家庭和供应链层面上不同类型能源使用变化的净收益来实现。

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