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Nonradial Directional Distance Function for Measuring the Environmental Efficiency of the Chinese Iron and Steel Industry

机译:用于测量中国钢铁工业环境效率的非移位方向距离功能

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The present article constructs nonradial directional distance function (DDF) methods to measure and contribute to improving the industrial sustainability performance of the Chinese iron and steel industry. For such an energy-intensive industry, environmental efficiency measurement is an important way to implement the “energy-saving and emission-reduction” principle. We reformulate the nonradial DDF in the form of Second-Order Cone Programming in order to transform the traditional DDF into linear programming and provide accurate efficiency results. The new approach is utilized to calculate the performance of 30 major iron and steel makers in China. Both technical efficiency and overall efficiency are calculated to help the managers of inefficient iron and steelmakers find weaknesses. We find that nearly half of the steel makers are environmental inefficient, most of which are increasing return to scale. Furthermore, specific value of desirable output increase and undesirable output reduction are calculated for achieving efficiency. The study concludes with some remarks for energy-environment policy and industrial decision makers based on the empirical analysis and makes comparison study between the policies obtained in this study and the existing government policies.
机译:本文构建了非移位方向距离功能(DDF)方法,以衡量和有助于提高中国钢铁工业的工业可持续性性能。对于这种能量密集型行业,环境效率测量是实施“节能减排”原则的重要途径。我们以二阶锥编程的形式重整非移位DDF,以便将传统的DDF转换为线性编程并提供准确的效率。新方法可用于计算中国30家主要钢铁制造商的性能。计算技术效率和整体效率都是计算钢铁和钢铁制造者低效的管理者发现弱点。我们发现近一半的钢铁制造商是环境效率的,其中大部分正在增加返回规模。此外,为了实现效率,计算所需输出增加和不期望的输出减少的特定值。本研究结论是对能源环境政策和工业决策者的一些评论,基于实证分析,并在本研究中获得的政策与现有政府政策之间进行比较研究。

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