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生态学杂志 ›› 2026, Vol. 45 ›› Issue (2): 617-626.doi: 10.13292/j.1000-4890.202602.013

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退耕还林对土壤有机碳含量、组分及化学结构的影响

王玉崧1,赵实2,王玲2,孙梓淇1,杨会侠1*   

  1. 1辽宁省森林经营研究所, 辽宁辽东半岛森林生态系统定位观测研究站, 辽宁丹东 118003; 2辽宁省林业发展服务中心, 沈阳 110031)

  • 出版日期:2026-02-10 发布日期:2026-08-01

Effects of restoring farmland to forest on the contents, components, and chemical structure of soil organic carbon.

WANG Yusong1, ZHAO Shi2, WANG Ling2, SUN Ziqi1, YANG Huixia1*   

  1. (1Liaoning Research Institute of Forest Management, Liaodong Peninsula Forest Ecosystem Positioning Observation Station, Dandong 118003, Liaoning, China; 2Liaoning Forestry Development Service Center, Shenyang 110031, China).

  • Online:2026-02-10 Published:2026-08-01

摘要: 退耕还林是我国规模最大的生态工程,在提高陆地生态系统水源涵养、土壤保持等功能中发挥着重要作用。尽管人们基于案例研究对退耕还林工程如何影响土壤有机碳及其化学组分开展了大量工作,但对退耕还林工程促进土壤有机碳积累的成效和驱动机制仍缺乏全面的认识。本文通过分析近15年间76个有关退耕还林后土壤有机碳含量变化的研究案例,综述了退耕还林对土壤有机碳含量、组分和化学结构的影响。结果表明:退耕还林初期土壤有机碳含量变化趋势不一,退耕还林20年后土壤有机碳呈增加趋势,平均增幅达52.76%。在组分与结构上,退耕还林显著提升了土壤活性有机碳组分,加快了土壤有机碳的周转速率;与此同时,芳香碳和烷基碳等稳定组分的比例也随之增加,表明有机碳在经历快速周转后,正逐渐向更为稳定的化学形态转化,最终提升了土壤有机碳的总储量和稳定性。建议未来从凋落物分解及其微生物机制、建立长期联网监测试验、构建土壤碳汇功能评价体系三方面对退耕还林的生态效应开展系统研究,深入理解退耕还林后土壤有机碳的动态变化与作用机制,为研发基于固碳增汇功能提升的退耕还林生态系统经营技术提供科学依据。


关键词: 退耕还林, 土壤有机碳, 碳汇

Abstract: Grain for Green Program is the largest ecological project in China, playing a crucial role in enhancing terrestrial ecosystem functions, such as water and soil conservation. Although extensive research has been conducted to investigate how restoring farmland to forest affects soil organic carbon (SOC) and its chemical components, our understanding of the effectiveness and mechanisms underlying SOC accumulation largely remains unclear. We reviewed the impacts of restoring farmland to forest on SOC content, its components, and chemical structure by analyzing 76 studies regarding SOC dynamics following the project over the past 15 years. The results showed that SOC exhibited inconsistent trends during the early phase of the poject. After 20 years of the implementation of the project, SOC generally exhibited an increasing trend, with the rate of increase tending to stabilize at an average of 52.76%. Regarding composition and structure of SOC, the conversion of cropland to forest significantly increased soil labile organic carbon fractions and accelerated the SOC turnover rate. Concurrently, there was a concomitant increase in the proportion of stable components, such as aromatic and alkyl carbon. This indicates that after undergoing rapid turnover, SOC is gradually transforming into more stable chemical forms, thereby enhancing both the total SOC stock and stability. We propose that future studies should focus on the following three aspects: litter decomposition and its microbial mechanisms, establishing long-term networked monitoring experiments, and developing evaluation systems for soil carbon sink functions. These efforts aim to gain in-depth understanding of the dynamics and mechanisms of SOC following this project, providing a scientific basis for developing ecosystem management technologies that enhance carbon sequestration and sink functions in Grain for Green ecosystems.


Key words: restoring farmland to forest, soil organic carbon, carbon sink