College of Economics, Sichuan Agricultural University, Chengdu 611130, China.
Int J Environ Res Public Health. 2022 Dec 5;19(23):16290. doi: 10.3390/ijerph192316290.
This paper employs the SBM-DDF method to measure the index of green total-factor productivity (GTFP), based on the panel data of 279 prefecture-level cities in China from 2007 to 2019, and constructs a spatial Durbin model (SDM) and a threshold effect to empirically test the effects of dual environmental-regulations and green technological innovation on GTFP. The results are as follows: (1) the SDM supports a nonlinear contribution of dual environmental-regulations spillover to GTFP. The relationship between formal environmental-regulation and GTFP is an inverted U-shape, while a U-shaped nonlinear relationship is found between informal environmental regulation and GTFP. (2) Green technology innovation has a significant negative moderating effect on the process of dual environmental-regulations affecting GTFP in local regions, but a positive moderating effect on informal environmental regulation in neighboring regions. (3) There is a significant green technology innovation threshold effect of dual environmental-regulations affecting GTFP. Specifically, the promotion effect of dual environmental-regulations on GFFP gradually increases as the level of green technology innovation increases.
本文运用 SBM-DDF 方法测算了中国 2007-2019 年 279 个地级市的绿色全要素生产率(GTFP)指数,并构建了空间杜宾模型(SDM)和门槛效应,实证检验了双重环境规制和绿色技术创新对 GTFP 的影响。结果表明:(1)双重环境规制溢出对 GTFP 的非线性贡献得到 SDM 的支持。正式环境规制与 GTFP 之间呈倒 U 型关系,而非正式环境规制与 GTFP 之间则呈现出 U 型非线性关系。(2)绿色技术创新对双重环境规制影响 GTFP 的过程具有显著的负向调节作用,但对相邻地区非正式环境规制具有显著的正向调节作用。(3)双重环境规制对 GTFP 的影响存在显著的绿色技术创新门槛效应。具体而言,随着绿色技术创新水平的提高,双重环境规制对 GFFP 的促进作用逐渐增大。