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Can Innovation Agglomeration Reduce Carbon Emissions? Evidence from China

机译:创新集聚可以减少碳排放吗?来自中国的证据

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摘要

Innovation agglomeration plays a decisive role in improving the input–output scale and marginal output efficiency of factors. This paper takes carbon emissions as the unexpected output and energy consumption as the input factor into the traditional output density model. The dynamic spatial panel Durbin model is used to analyze the mechanism for innovation agglomeration and energy intensity to affect carbon emissions from 2004 to 2017 in thirty Chinese provinces. Then, we test the possible mediating effect of energy intensity between innovation agglomeration and carbon emissions. The major findings are as follows. (1) The carbon emission intensity has time-dependence and positive spatial spillover effect. That is, there is a close correlation between current and early carbon emissions, and there is also a high-degree correlation between regional and surrounding areas’ carbon emissions. (2) Carbon emissions keep a classical inverted U-shaped relation with innovation agglomeration, as well as with energy intensity. However, the impact of innovation agglomeration on carbon emissions in inland regions of China does not appear on the right side of the inverted U-shaped curve, while carbon emissions are subject to a positive nonlinear promoting effect from energy intensity. (3) When the logarithm of innovation agglomeration is more than 3.0309, it first shows the inhibition effect on energy intensity. With the logarithm of innovation agglomeration exceeding 5.0100, it will show the dual effect of emission reduction and energy conservation. (4) Energy intensity could work as the intermediary variable of innovation agglomeration’s influence on carbon emissions. Through its various positive externalities, innovation agglomeration can produce a direct impact on carbon emissions, and through energy intensity, it can also affect carbon emissions indirectly.
机译:创新集聚在提高输入输出规模和边缘输出效率方面发挥着决定性作用。本文将碳排放作为意外输出和能耗作为传统输出密度模型的输入因子。动态空间面板Durbin模型用于分析创新集聚和能源强度的机制,影响2004年至2017年在三十中国省份的碳排放量。然后,我们测试创新聚集和碳排放之间的能量强度的可能调解效果。主要发现如下。 (1)碳排放强度具有时间依赖性和正空间溢出效应。也就是说,当前和早期碳排放之间存在密切相关,并且区域和周围地区的碳排放之间的高度相关性。 (2)碳排放与创新集聚以及能源强度保持古典倒立的U形关系。然而,创新集聚对中国内陆地区的碳排放的影响不会出现在倒U形曲线的右侧,而碳排放受能量强度的正非线性促进效果。 (3)当创新集聚的对数超过3.0309时,它首先显示了对能量强度的抑制作用。随着创新集聚的对数超过5.0100,它将显示减排和节能的双重效果。 (4)能源强度可以作为创新集聚对碳排放影响的中介变量。通过其各种正面性,创新集聚可以对碳排放产生直接影响,并通过能量强度产生直接影响,它也可以间接影响碳排放。

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