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长三角生态环境协同治理机制困境与路径优化

陈兴宇 贾其娜

人民长江2024,Vol.55Issue(5):43-48,6.
人民长江2024,Vol.55Issue(5):43-48,6.DOI:10.16232/j.cnki.1001-4179.2024.05.006

长三角生态环境协同治理机制困境与路径优化

Mechanism dilemma and path optimization of collaborative governance of ecological environment in Yangtze River Delta

陈兴宇 1贾其娜2

作者信息

  • 1. 东南大学 马克思主义学院,江苏 南京 211100||安徽师范大学 长三角一体化发展研究院,安徽 芜湖 241000
  • 2. 安徽师范大学 生态与环境学院,安徽 芜湖 241000
  • 折叠

摘要

Abstract

Collaborative governance of the regional ecological environment is an important path to accelerate regional green transformation and promote harmonious coexistence between humans and nature between regions,which is the internal logic and requirement of ecological green integration construction in the Yangtze River Delta.Based on discussing the current situation of ecological environment governance in the Yangtze River Delta region,we elaborated on the institutional difficulties faced by eco-logical governance,such as incomplete top-level design mechanisms,unsmooth interest coordination mechanisms,unclear rights and responsibilities of governance entities,and incomplete joint prevention and control mechanisms.Based on the characteristics of collaborative governance theory and regional ecological environment governance,an optimization path was proposed to optimize the top-level decision-making design mechanism,streamline the interest coordination mechanism,improve the participation mecha-nism of multiple stakeholders,and improve the joint prevention and control mechanism.It has important theoretical values for im-proving the ability of cross regional ecological environment co-protection and joint governance,and promoting the construction of ecological green integration in the Yangtze River Delta.

关键词

生态环境/协同治理/机制困境/路径优化/长三角地区

Key words

ecological environment/collaborative governance/mechanism dilemma/path optimization/Yangtze River Delta

分类

经济学

引用本文复制引用

陈兴宇,贾其娜..长三角生态环境协同治理机制困境与路径优化[J].人民长江,2024,55(5):43-48,6.

基金项目

天津市哲学社会科学规划项目"交互型跨界污染责任界定及治理补偿机制研究"(TJYJQN22-007) (TJYJQN22-007)

人民长江

OA北大核心CSTPCD

1001-4179

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