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Non-radial metafrontier approach to identify carbon emission performance and intensity

机译:识别碳排放性能和强度的非径向元边界方法

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Different carbon emitting nations and regions use different production technologies. To analyze potential sources of carbon intensity reduction, this study applied a metafrontier function and a non-radial data envelopment analysis (DEA) approach to propose a new carbon emission performance index. An empirical study of carbon emissions from 58 countries between 2001 and 2007 led to three key findings. First, different reference technologies lead to significant differences in carbon emission performance. Assessing carbon emission performance using the group frontier as the evaluation criterion consistently yields equal or greater performance than when using the metafrontier as the benchmark. Second, the carbon emission performance of Asia is lower than that of Europe and the Americas, but Asia has the greatest potential to reduce carbon intensity. Production technology levels in Asia have lagged behind levels in Europe and the Americas; these gaps, however, have gradually narrowed. Finally, ineffective management and gaps in production technologies are the two main contributors to carbon dioxide intensity. Management factors are more significant overall for Asia, Europe and America; However, different individual countries have different perspective on the sources of potential carbon intensity.
机译:不同的碳排放国家和地区使用不同的生产技术。为了分析碳强度降低的潜在来源,本研究应用了元边界函数和非径向数据包络分析(DEA)方法提出了新的碳排放绩效指标。对2001年至2007年间58个国家的碳排放进行的实证研究得出了三个主要发现。首先,不同的参考技术导致碳排放性能的显着差异。与使用元边界作为基准时相比,使用组边界作为评估标准来评估碳排放绩效的结果始终如一。其次,亚洲的碳排放绩效低于欧洲和美洲,但亚洲在降低碳强度方面潜力最大。亚洲的生产技术水平已经落后于欧洲和美洲的水平。但是,这些差距已逐渐缩小。最后,无效的管理和生产技术的差距是造成二氧化碳排放强度的两个主要因素。总体而言,亚洲,欧洲和美洲的管理因素更为重要。但是,不同的国家对潜在碳强度的来源有不同的看法。

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