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应用生态学报 ›› 2026, Vol. 37 ›› Issue (8): 2704-2718.doi: 10.13287/j.1001-9332.202608.028

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2000—2020年北方农牧交错区生态系统服务时空变化及影响因素

詹春晖, 张剑*, 樊曜源, 程思怡, 任小冉   

  1. 西北师范大学地理与环境科学学院, 兰州 730070
  • 收稿日期:2026-04-04 修回日期:2026-07-06 出版日期:2026-08-18 发布日期:2027-02-18
  • 通讯作者: *E-mail: zh_jian06@163.com
  • 作者简介:詹春晖, 女, 2002年生, 硕士研究生。主要从事生态环境遥感研究。E-mail: 1415713642@qq.com
  • 基金资助:
    国家自然科学基金项目(42061010)

Spatiotemporal variations in ecosystem services and their influencing factors in the agro-pastoral transition zone of northern China during 2000-2020

ZHAN Chunhui, ZHANG Jian*, FAN Yaoyuan, CHENG Siyi, REN Xiaoran   

  1. College of Geography and Environmental Science, Northwest Normal University, Lanzhou 730070, China
  • Received:2026-04-04 Revised:2026-07-06 Online:2026-08-18 Published:2027-02-18

摘要: 明确北方农牧交错区生态系统服务的时空演变规律及驱动机制,对区域生态屏障功能维持和土地可持续管理至关重要。本研究基于InVEST、CASA、RWEQ模型评估2000—2020年北方农牧交错带粮食生产、固碳、水土保持、防风固沙和水源涵养5项关键生态系统服务,并结合空间统计和机器学习方法,揭示其时空分异特征及主导驱动因子。结果表明:空间上,研究区粮食生产高值区分布于东部平原地区,固碳和水土保持高值区稳定分布在南部及沿山脉延伸带,防风固沙高值区分布于北部,水源涵养高值区主要位于南部和西部。2000—2020年间,研究区生态系统服务呈现阶段性演变特征:粮食生产持续增长,总量由2.32×107 t增至6.53×107 t;固碳总体增长,于2015年达峰值10.7×107 t后略回落;水土保持波动上升,于2010年达到高值3.63×109 t,随后2015年略下降,于2020年达峰值4.03×109 t;水源涵养缓慢上升,2010年后趋于稳定;防风固沙变化最剧烈,先由2000年的4.28×109 t降至2010年的2.98×109 t,最终于2020年升至14.7×109 t。各生态系统服务的驱动机制分异明显:降水是水源涵养的最强正向驱动因子(SHAP值为67.95);高程主导了粮食生产的空间分布格局(SHAP值为64.47);坡度对水土保持呈显著负向控制(SHAP值为38.28);风速是防风固沙的核心负向约束(SHAP值为7.02),其与降水的正向贡献共同驱动了防风固沙的变化;固碳受氮沉降、风速和降水的负向调控。北方农牧交错带生态系统服务呈现时空异质性,不同生态系统服务之间协同与权衡关系并存,体现区域多功能耦合格局。基于自然条件和人类活动的驱动机制差异,区域生态管理应实施分区分类调控,以优化生态系统服务结构。

关键词: 生态系统服务, 中国北方农牧交错带, 权衡与协同, 多服务关系, 驱动机制

Abstract: Quantifying the spatiotemporal patterns and driving mechanisms of ecosystem services in the agro-pastoral transition zone of northern China is crucial for maintaining their regional ecological barrier functions and achieving sustainable land management. Based on the InVEST, CASA, and RWEQ models, we evaluated five key ecosystem services (food production, carbon sequestration, soil and water conservation, windbreak and sand fixation, and water yield) from 2000 to 2020 in the agro-pastoral transition zone of northern China, and further combined spatial statistics and machine learning methods to reveal their spatiotemporal differentiation characteristics and dominant driving factors. The results showed strong spatial variations. High-value areas of food production were distributed in the eastern plains, while high-value areas of carbon sequestration and soil and water conservation were stably distributed in the southern region and along mountain ranges. High-value areas of windbreak and sand fixation were located in the north, and high-value areas of water yield were mainly situated in the south and west. From 2000 to 2020, ecosystem services displayed stage-specific evolutionary characteristics. Food production increased continuously, with the total volume growing from 2.32×107 t to 6.53×107 t. Carbon sequestration generally increased, rea-ching a peak of 10.7×107 t in 2015 before slightly declining. Soil and water conservation fluctuated upward, reaching a high value of 3.63×109 t in 2010, decreasing slightly in 2015, and then peaking at 4.03×109 t in 2020. Water yield rose slowly and tended to stabilize after 2010. Windbreak and sand fixation changed most drastically, first decreasing from 4.28×109 t in 2000 to 2.98×109 t in 2010, and ultimately rising to 14.7×109 t in 2020. The driving mechanisms for each ecosystem service were distinctly differentiated. Precipitation was the strongest positive driving factor for water yield (SHAP value was 67.95). Elevation dominated the spatial distribution pattern of food production (SHAP value was 64.47). Slope showed a strong negative association with soil and water conservation (SHAP value was 38.28). Wind speed was the primary limiting factor for windbreak and sand fixation (SHAP value was 7.02), and its changes were jointly driven by wind speed and the positive contribution of precipitation. Carbon sequestration showed negative associations with nitrogen deposition, wind speed, and precipitation. Ecosystem ser-vices in the agro-pastoral transition zone of northern China exhibited spatiotemporal heterogeneity, with synergetic and trade-off relationships coexisting among different services, reflecting multifunctional coupling. Based on the differences in driving mechanisms between natural conditions and human activities, regional ecological management should implement zoned and classified regulation to optimize the structure of ecosystem services.

Key words: ecosystem service, agro-pastoral transition zone of northern China, trade-off and synergy, multi-service relationship, driving mechanism