School of Public Policy and Administration, Chongqing University, Chongqing, China.
School of Economics and Management, Chongqing Normal University, Chongqing, China.
Environ Sci Pollut Res Int. 2023 Sep;30(45):101296-101316. doi: 10.1007/s11356-023-29437-1. Epub 2023 Aug 30.
Science and technological innovation play a crucial role in achieving the goals of carbon peaking and carbon neutrality. They are also vital for improving the scale, structure, and allocation of input and output factors, as well as enhancing the marginal efficiency of production factors. This study investigates the impact of science and technological innovation on carbon productivity using data from 30 provinces (cities, and autonomous regions) in China spanning the period from 2004 to 2020. The findings are as follows: First, the spatial characteristics of carbon productivity in China have gradually evolved into "low in the northern regions and high in the southern regions." The spatial distribution of science and technological innovation in China shows a gradual decrease from the southeast to the northwest. Second, employing the fixed effect model, we find that science and technological innovation has a significant positive effect on carbon productivity, with regional variations in the magnitude of the effect. Furthermore, we identify industrial structure rationalization, industrial structure advancement, and industrial structure ecology as important mechanisms through which science and technological innovation influence carbon productivity. The mediation effects are measured at 3.37%, 8%, and 73.94%, respectively. These research findings provide valuable insights for enhancing technological innovation capabilities, realizing low-carbon development, and addressing the challenges posed by climate change.
科技创新在实现碳达峰碳中和目标中发挥着关键作用,也是提高投入产出要素规模、结构、配置效率和全要素生产率的关键。本研究利用 2004-2020 年中国 30 个省(市、自治区)的数据,考察了科技创新对碳生产率的影响。结果表明:(1)中国碳生产率的空间特征逐渐演变为“北方低、南方高”。中国科技创新的空间分布呈现出从东南向西北逐渐递减的趋势。(2)运用固定效应模型发现,科技创新对碳生产率具有显著的正向影响,且影响程度存在区域差异。进一步研究表明,产业结构合理化、产业结构高级化和产业结构生态化是科技创新影响碳生产率的重要机制,其中介效应分别为 3.37%、8%和 73.94%。本研究结果为提高科技创新能力、实现低碳发展、应对气候变化挑战提供了重要的决策参考。