School of Statistics, Jiangxi University of Finance and Economics, No. 169, East Shuanggang Road, Changbei, Nanchang, 330013, China.
Environ Sci Pollut Res Int. 2023 Jul;30(34):82248-82263. doi: 10.1007/s11356-023-28160-1. Epub 2023 Jun 16.
How to achieve the goal of "carbon peak and carbon neutrality" and explore the compatibility of industrial and ecological civilization is a major challenge for China today. This study analyzes the impact of industrial intelligence on industrial carbon emissions efficiency in 11 provinces of China's Yangtze River Economic Belt, measuring the efficiency of industrial carbon emissions through the non-expected output slacks-based measure (SBM) model, selecting industrial robot penetration to measure the level of industrial intelligence, establishing a two-way fixed model to verify the impact of industrial intelligence on carbon emission efficiency, and testing for intermediary effects and regional heterogeneity. The results show that: (1) the industrial carbon emission efficiency of the 11 provinces shows year-over-year improvement, with significant differences between upstream, midstream, and downstream, where downstream is the highest and upstream is the lowest. (2) The development of industrial intelligence is highly uneven, with the upstream level being the weakest. (3) Industrial intelligence can improve the efficiency of industrial carbon emissions by enhancing green technological innovation and energy use efficiency. (4) The effect of industrial intelligence on industrial carbon emission efficiency also shows regional heterogeneity. Finally, we present policy recommendations. This research provides mathematical and scientific support for achieving carbon reduction targets at an early stage and helps accelerate the construction of a modern, low-carbon China.
如何实现“碳达峰、碳中和”的目标,探索工业与生态文明的兼容性,是当下中国面临的重大挑战。本研究以长江经济带 11 省市为研究对象,运用非期望产出 SBM 模型测度工业碳排放效率,选取工业机器人普及率衡量工业智能化水平,构建双向固定效应模型验证工业智能化对工业碳排放效率的影响,并进行中介效应和区域异质性检验。结果表明:(1)11 省市工业碳排放效率逐年提升,上中下游地区间存在显著差异,下游地区最高,上游地区最低。(2)工业智能化发展水平存在较大差异,上游地区最为薄弱。(3)工业智能化可以通过提升绿色技术创新和能源利用效率来提高工业碳排放效率。(4)工业智能化对工业碳排放效率的影响还存在区域异质性。最后,提出相关政策建议。本研究为尽早实现碳减排目标提供了数理和科学支撑,有助于加快建设现代化低碳中国。