土壤碳
表土
环境科学
底土
总有机碳
碳纤维
碳循环
全球变化
多级模型
土壤有机质
大气碳循环
颗粒有机碳
环境资源管理
气候变化
蓝炭
环境保护
主要成分
无机碳总量
作者
Juan Li,Shanshan Yang,Jiayi Li,Miaoyue Wang,Hao Cheng,Xiling Gu,Huangyu Huo,Yuxi Wei,Jinzhi Ding
出处
期刊:Earth’s Future
[American Geophysical Union]
日期:2025-11-01
卷期号:13 (11)
摘要
Abstract Recent advancements in observational data and experimental research have significantly enhanced our understanding of the mechanisms governing the magnitude, distribution, and dynamics of soil organic carbon (SOC) patterns. However, few studies have systematically explored the hierarchical drivers of SOC. This study addresses this gap by integrating multiple independent datasets—covering productivity, carbon allocation, carbon turnover, and carbon fractions—to construct a comprehensive framework for the hierarchical drivers shaping global SOC patterns. Using this framework, we examine the impact pathways and contributions of primary drivers. Our findings show that climate, as the fundamental primary driver, mainly influences SOC through carbon input pathways, while soil properties, as a secondary driver, predominantly affect SOC via carbon output pathways. Further analysis reveals that carbon input plays a key role in shaping topsoil SOC distribution, while carbon output is more influential in regulating subsoil SOC. In both cases, these drivers exert their effects primarily through stable organic carbon fractions, particularly mineral‐associated organic carbon (MAOC). The influence of these drivers on particulate organic carbon (POC), however, is in the opposite direction. This study provides the first quantification of the impact pathways and relative strengths of the hierarchical drivers shaping global SOC. It also underscores the need to consider the hierarchical structure of these drivers when assessing the magnitude, distribution, and dynamics of SOC, particularly in relation to its fractions.
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