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Environmental efficiency of land transportation in China: A parallel slack-based measure for regional and temporal analysis

机译:中国陆地运输的环境效率:基于松弛的并行区域和时间分析方法

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As the second largest economic entity in the world, China plays an important role in controlling global carbon dioxide (CO2) emissions. The land transportation sector (including railway transportation and road transportation) has been the most important source of emissions in China and the average CO2 emissions of land transportation were 529.31 million tons during the period 2009-2012. In this study, a parallel Slack-Based Measure Data Envelopment Analysis model is proposed, which is used for evaluating the overall efficiency of the land transportation sector and individual efficiencies of the railway transportation and highway transportation subsectors at the same time, considering CO2 emissions. The empirical results lead to three conclusions: (a) only Anhui province is efficient each year during 2009-2012. (b) The environmental efficiency of the Eastern area in China is the best, followed by the Central area, with the Western area being the worst. (c) The performance of railway transportation is better than that of highway transportation. These three conclusions lead to policy suggestions to promote highway transportation technological innovation and narrow the regional imbalances in land transportation. This paper makes two main contributions: the model advances improvements to methods used in the Data Envelopment Analysis technique, and also provides governments with a practical and yet easy-to-adopt perspective to implement land transportation performance measurement that aids in decision making. (C) 2016 Elsevier Ltd. All rights reserved.
机译:作为世界第二大经济体,中国在控制全球二氧化碳排放中发挥着重要作用。陆路运输行业(包括铁路运输和公路运输)一直是中国最重要的排放源,2009-2012年期间,陆路运输的平均二氧化碳排放量为52931万吨。在这项研究中,提出了一个基于松弛度的并行测量数据包络分析模型,该模型用于评估陆地运输部门的整体效率以及铁路运输和公路运输子部门的单个效率,同时考虑二氧化碳的排放。实证结果得出三个结论:(a)在2009-2012年期间,仅安徽省每年有效率。 (b)中国东部地区的环境效率最高,其次是中部地区,西部地区最差。 (c)铁路运输的表现优于公路运输。这三个结论为促进公路运输技术创新和缩小陆路运输区域不平衡提供了政策建议。本文做出了两个主要贡献:该模型对数据包络分析技术中使用的方法进行了改进,并且还为政府提供了一种实用且易于采用的视角来实施土地交通绩效评估,从而有助于决策。 (C)2016 Elsevier Ltd.保留所有权利。

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