Spatial association network structure of agricultural carbon emission efficiency in Chinese cities and its driving factors.

IF 3.9 2区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Xu Wei, Bohong Chen
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Abstract

In light of the Chinese government's dual carbon goals, achieving cleaner production activities has become a central focus, with regional environmental collaborative governance, including the management of agricultural carbon reduction, emerging as a mainstream approach. This study examines 268 prefecture-level cities in China, measuring the carbon emission efficiency of city agriculture from 2001 to 2022. By integrating social network analysis and a modified gravity model, the study reveals the characteristics of the spatial association network of city agricultural carbon emission efficiency in China. Additionally, the quadratic assignment procedure is employed to investigate the driving factors. The findings indicate that: (1) The carbon emission efficiency of cities agriculture in China displays substantial spatiotemporal heterogeneity, characterized by marked regional clustering. Central cities generally exhibit higher efficiency levels, while the surrounding cities tend to have lower efficiency. (2) The carbon emission efficiency of city agriculture in China displays multidimensional, complex, and organic characteristics, with potential for enhanced network stability. (3) Agricultural regions in central and southeastern China dominate the spatial network, while regions with weaker agricultural sectors, like Beijing, Shanghai, and Ningxia, occupy peripheral positions. (4) Within the spatial association network of city agricultural carbon emission efficiency in China, Intra block spatial correlations are low, while interblock spatial correlations are strong, exhibiting significant spillover effects. (5)Variations in agricultural development levels and mechanization significantly enhance the formation of networks related to city agricultural carbon emission efficiency in China. Conversely, differences in industrial structure and fertilizer application levels exert a substantial negative influence on these networks.

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中国城市农业碳排放效率的空间关联网络结构及其驱动因素
鉴于中国政府的双重碳目标,实现清洁生产活动已成为焦点,区域环境协同治理,包括农业碳减排管理,成为主流方法。本研究以中国268个地级市为研究对象,对2001 - 2022年城市农业碳排放效率进行了测度。结合社会网络分析和修正的重力模型,揭示了中国城市农业碳排放效率的空间关联网络特征。此外,采用二次赋值法对驱动因素进行了分析。研究结果表明:①中国城市农业碳排放效率表现出明显的时空异质性,具有明显的区域聚类特征;中心城市总体上表现出较高的效率水平,而周边城市的效率水平往往较低。②中国城市农业碳排放效率表现出多维、复杂、有机的特征,具有增强网络稳定性的潜力。③中国中部和东南部农业区在空间网络中占据主导地位,北京、上海和宁夏等农业相对薄弱的区域处于边缘位置。④在中国城市农业碳排放效率空间关联网络中,块内空间相关性较低,块间空间相关性较强,具有显著的溢出效应。(5)农业发展水平和机械化程度的变化显著促进了中国城市农业碳排放效率相关网络的形成。相反,产业结构和肥料施用水平的差异对这些网络产生实质性的负面影响。
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来源期刊
Scientific Reports
Scientific Reports Natural Science Disciplines-
CiteScore
7.50
自引率
4.30%
发文量
19567
审稿时长
3.9 months
期刊介绍: We publish original research from all areas of the natural sciences, psychology, medicine and engineering. You can learn more about what we publish by browsing our specific scientific subject areas below or explore Scientific Reports by browsing all articles and collections. Scientific Reports has a 2-year impact factor: 4.380 (2021), and is the 6th most-cited journal in the world, with more than 540,000 citations in 2020 (Clarivate Analytics, 2021). •Engineering Engineering covers all aspects of engineering, technology, and applied science. It plays a crucial role in the development of technologies to address some of the world''s biggest challenges, helping to save lives and improve the way we live. •Physical sciences Physical sciences are those academic disciplines that aim to uncover the underlying laws of nature — often written in the language of mathematics. It is a collective term for areas of study including astronomy, chemistry, materials science and physics. •Earth and environmental sciences Earth and environmental sciences cover all aspects of Earth and planetary science and broadly encompass solid Earth processes, surface and atmospheric dynamics, Earth system history, climate and climate change, marine and freshwater systems, and ecology. It also considers the interactions between humans and these systems. •Biological sciences Biological sciences encompass all the divisions of natural sciences examining various aspects of vital processes. The concept includes anatomy, physiology, cell biology, biochemistry and biophysics, and covers all organisms from microorganisms, animals to plants. •Health sciences The health sciences study health, disease and healthcare. This field of study aims to develop knowledge, interventions and technology for use in healthcare to improve the treatment of patients.
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