能源生产率增长的国际技术扩散机制研究

W. Jin, Zhongxiang Zhang
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摘要

在最近的环境经济学研究中,先进的环境和能源技术的国际传播受到了很大的关注。作为对“黑箱”复杂数值模拟的补充,本文有助于建立一个简单、直观的分析框架,揭示能源生产率增长的国际技术扩散机制。本文借鉴索洛增长模型构建基准外生框架,探讨能源技术扩散的基本机制。然后将这一外生模型扩展为romer型内源性模型,其中使用研发引起的能源技术品种扩张来表示技术扩散的深层结构。研究表明,在均衡增长路径均衡下,各国能源生产率的增长率是相同的,但各国在吸收外国技术和自主创新效率方面的差异导致了能源生产率水平的差异。吸收外国技术扩散并进行自主创新的能力越强的经济体,其能源生产率水平往往越高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the Mechanism of International Technology Diffusion for Energy Productivity Growth
International diffusion of advanced environment and energy-related technologies has received much attention in recent environmental economics studies. As a much needed complement to the “black box” complex numerical modelling, this paper contributes to developing a simple, intuitive analytical framework to unveil the mechanism of international technology diffusion for energy productivity growth. We draw on the Solow growth model to build a benchmark exogenous framework to explore the basic mechanism of energy technology diffusion. This exogenous model is then extended to a Romer-type endogenous one where the R&D-induced expansion of energy technology varieties is used to represent the deep structure of technology diffusion. We show that the growth rates of energy productivity are the same across countries in the balanced growth path equilibrium, but the cross-country differences in the efficiency of foreign technology absorption and indigenous innovation lead to cross-country divergence in the levels of energy productivity. The economy that has a stronger capacity of assimilating foreign technology diffusion and undertaking indigenous innovation tends to gain a higher level of energy productivity.
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