School of Management and Economics, Beijing Institute of Technology, Beijing, 100081, China.
School of Law & Business, Wuhan Institute of Technology, Wuhan, 430205, People's Republic of China.
Environ Sci Pollut Res Int. 2024 May;31(25):36329-36348. doi: 10.1007/s11356-023-28614-6. Epub 2023 Jul 17.
Superficial or cosmetic measures are unlikely to solve the complex challenges of carbon haze governance. Carbon-biased technological progress plays a significant role in low-carbon technology and economic sustainable development. This study introduces carbon resources as a production factor in the transcendental logarithmic function to calculate the biased technological progress index of 30 provinces in China between 2010 and 2020. Subsequently, this study constructs the spatial Durbin model to empirically investigate the spatial spillover effect of carbon-biased technology progress on carbon haze coordinated governance. The findings reveal that China's technological progress is primarily characterized by carbon bias, particularly in terms of labor-using carbon-saving technological progress and capital-using carbon-saving technological progress. Additionally, both levels of carbon haze coordinated governance and carbon-biased technological progress have significant spatial agglomeration characteristics. Moreover, the carbon-biased technological progress can facilitate synergy degree of carbon haze governance through energy-saving effects but can also hinder the carbon haze coordinated governance through rebound effects. Therefore, it is imperative to improve labor productivity, augment green capital investment, and stimulate the induction of technological progress towards carbon saving to achieve sustainable and high-quality economic development. The primary contribution is identifying the uncertainty surrounding the impact of carbon-biased technological progress on coordinated governance of carbon haze, while also providing theoretical explanations for the influence channels of carbon-biased technological progress.
表面或表面的措施不太可能解决碳霾治理的复杂挑战。碳偏向技术进步在低碳技术和经济可持续发展中起着重要作用。本研究将碳资源引入超越对数函数作为生产要素,以计算 2010 年至 2020 年间中国 30 个省份的偏向技术进步指数。随后,本研究构建空间杜宾模型,实证研究碳偏向技术进步对碳霾协调治理的空间溢出效应。研究结果表明,中国的技术进步主要表现为碳偏向,特别是在劳动节约型碳减排技术进步和资本节约型碳减排技术进步方面。此外,碳霾协调治理和碳偏向技术进步水平均具有显著的空间集聚特征。而且,碳偏向技术进步可以通过节能效应促进碳霾治理协同度,但也可以通过回弹效应阻碍碳霾协调治理。因此,提高劳动生产率、增加绿色资本投资、激发技术进步向碳节约方向诱导,对于实现可持续和高质量的经济发展至关重要。本研究的主要贡献在于确定了碳偏向技术进步对碳霾协调治理的影响的不确定性,同时为碳偏向技术进步的影响渠道提供了理论解释。