资源型城市绿色全要素生产率空间关联网络的结构特征与形成机制

    Structural characteristics and formation mechanism of green total factor productivity spatial correlation network in resource-based cities

    • 摘要: 新质生产力以全要素生产率大幅提升为核心标志,是引领发展的强劲动力。在此背景下,系统解构绿色全要素生产率(Green Total Factor Productivity, GTFP)的空间关联网络结构及其形成机制,对推动区域协同发展与绿色转型具有重要现实意义。资源型城市普遍面临产业结构偏重、能源结构高碳的发展瓶颈,GTFP能够更加科学、全面地衡量其经济增长质量与可持续性。以我国116个资源型城市为研究对象,采用社会网络分析方法精细刻画GTFP空间关联网络的结构特征,并借助指数随机图模型系统识别其形成机制。研究发现:我国资源型城市GTFP空间关联呈现多核心、高连通、强稳健的复杂网络形态,突破了传统的地理邻近限制,空间溢出效应显著;板块分析进一步表明,经纪人板块、净受益板块、双向溢出板块与净溢出板块分布相对均衡,网络功能结构趋于协调,显示出较强韧性;机制检验结果显示,产业结构合理化(RIS)、环境规制强度(ERI)、研发投入(R&D)、能源效率(EE)与外商直接投资(FDI)等因素对GTFP空间关联呈现出异质性影响,该结论可为资源型城市绿色转型与区域协同发展政策制定提供理论依据与实证支持。基于此研究结论,从增强核心节点辐射与边缘城市融入、推动功能互补与联动提升、夯实GTFP提升的微观基础和构建区域协同保障机制四方面提出了对策建议。

       

      Abstract: New quality productive forces, characterized by substantial increases in total factor productivity, serve as a powerful engine driving development. Against this backdrop, systematically deconstructing the spatial correlation network structure and formation mechanisms of green total factor productivity(GTFP) holds significant practical implications for promoting regional coordinated development and green transformation. Resource-based cities commonly face development bottlenecks characterized by heavy industrial structures and high-carbon energy mixes. GTFP offers a more scientific and comprehensive measure of their economic growth quality and sustainability. Using China’s 116 resource-based cities as the research sample, this study employs social network analysis to precisely delineate the structural features of the GTFP spatial correlation network. An exponential random graph model is then applied to systematically identify its formation mechanisms. Findings reveal that the spatial GTFP network in China’s resource-based cities exhibits a complex multi-core, highly connected, and robust network structure. This transcends traditional geographic proximity constraints, demonstrating significant spatial spillover effects. Block analysis further indicates relatively balanced distributions across broker blocks, net beneficiary blocks, bidirectional spillover blocks, and net spillover blocks, suggesting a coordinated functional network structure and strong resilience. Mechanism testing reveals that factors including industrial structure rationalization(RIS), environmental regulation intensity(ERI), research and development(R&D) investment, energy efficiency(EE), and foreign direct investment(FDI) exert significant heterogeneous driving effects on GTFP spatial linkage. These findings provide theoretical foundations and empirical support for formulating policies on green transformation and regional coordinated development in resource-based cities. Based on these findings, policy recommendations are proposed across four dimensions: enhancing the radiation effect of core nodes and the integration of peripheral cities; promoting functional complementarity and synergistic upgrading; strengthening the microfoundations for GTFP improvement; and establishing regional coordination safeguards.

       

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