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中国"山水工程"生态系统服务时空交互特征及跃迁机制

徐彩瑶 许文静 孔凡斌 王辰星

生态学报2026,Vol.46Issue(10):5073-5091,19.
生态学报2026,Vol.46Issue(10):5073-5091,19.DOI:10.20103/j.stxb.202508182144

中国"山水工程"生态系统服务时空交互特征及跃迁机制

Spatiotemporal interaction characteristics and transition mechanism of ecosystem services in the Shan-Shui Initiative,China

徐彩瑶 1许文静 1孔凡斌 2王辰星3

作者信息

  • 1. 浙江农林大学浙江省乡村振兴研究院,"千万工程"研究院,经济管理学院,杭州 311300
  • 2. 南京林业大学数字林业与绿色发展研究院,经济管理学院,南京 210037
  • 3. 中国科学院生态环境研究中心区域与城市生态安全全国重点实验室,北京 100085
  • 折叠

摘要

Abstract

Comprehensively revealing the spatiotemporal interactions and transition mechanisms of Ecosystem services(ES)under China's Integrated Protection and Restoration Project for Mountains,Rivers,Forests,Farmlands,Lakes,Grasslands,and Deserts(hereafter referred to as the"Shan-Shui Initiative")is crucial for scientifically evaluating the effectiveness of ecological restoration and advancing the Chinese path toward modernization characterized by harmony between humans and nature.This study focused on the implementation areas of the Shan-Shui Initiative and quantified four key ES:water supply,carbon sequestration,climate regulation,and soil retention,based on their biophysical measurements.By integrating LISA time-path analysis,spatiotemporal transition identification,and quantile regression modeling,we systematically elucidated the evolution patterns,interactive characteristics,and intrinsic driving mechanisms of these key services.The results showed that:(1)ES in the Shan-Shui Initiative areas exhibited pronounced spatiotemporal heterogeneity and significant ecological restoration achievements.From 2016 to 2023,climate regulation services increased steadily by 5.5%,soil retention fluctuated but remained at a relatively high level,water supply services peaked during the early policy phase and then became more variable,and the degradation trend of carbon sequestration was effectively curbed.(2)LISA-based spatiotemporal transition analysis indicated differentiated spatial evolution patterns,with climate regulation and soil retention services showing the greatest spatial stability,while carbon sequestration and water supply services exhibited higher spatial volatility.(3)The dominant factors influencing ES evolution varied significantly across quantiles:natural factors(e.g.,precipitation,NDVI)primarily maintained or enhanced ES levels in high-quantile regions,whereas socioeconomic and climatic stressors(e.g.,population density,temperature)exerted major constraints in low-quantile regions.(4)Two distinct ES transition modes-low-quantile constraint and high-quantile driven-were identified,revealing differentiated pathways of natural and social influences.This study provides a scientific basis for optimizing ecological outcomes,enabling precise spatial management,and informing future planning of the Shan-Shui Initiative.

关键词

生态系统服务/山水工程/时空交互/分位数回归/跃迁机制

Key words

ecosystem service/Shan-Shui Initiative/spatiotemporal transition dynamics/quantile regression/transition mechanism

引用本文复制引用

徐彩瑶,许文静,孔凡斌,王辰星..中国"山水工程"生态系统服务时空交互特征及跃迁机制[J].生态学报,2026,46(10):5073-5091,19.

基金项目

国家自然科学基金青年项目(42301328) (42301328)

国家自然科学基金面上项目(42371294) (42371294)

国家社会科学基金重大项目(23ZDA105) (23ZDA105)

生态学报

OACHSSCD

1000-0933

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