水槽(地理)
全球变化
环境科学
脆弱性(计算)
气候变化
碳汇
土壤碳
固碳
自然资源经济学
碳循环
营养物
土壤水分
农业
全球变暖
碳纤维
减缓气候变化
环境保护
生态化学计量学
生态学
土壤退化
土壤养分
营养循环
温室气体
环境变化
碳泄漏
地球科学
土地利用、土地利用的变化和林业
作者
Muhammad Iqbal,Muhammad Ansar Farooq,Rattan Lal,Mohamed Abdalla,Pete Smith
摘要
ABSTRACT Soil carbon sequestration (SC seq ) is fundamental to global climate mitigation initiatives; however, growing evidence indicates an expanding disparity between carbon (C) accumulation and its long‐term persistence. This article aims to integrate recent advances in microbial ecology, mineral biogeochemistry, and nutrient stoichiometry to examine why increases in soil C (SC) stocks do not necessarily translate into long‐term persistence. The article introduces the fragile sink framework, wherein sink durability reflects the balance between internal C throughput and the strength of stabilizing barriers. Global change drivers, including warming, elevated CO 2 (eCO 2 ), nutrient enrichment, and anthropogenic disturbance, can accelerate internal C turnover, resulting in soils that are structurally younger, more reactive, and increasingly vulnerable to rapid C loss despite stable or rising stocks. The article shows that destabilization begins at predictable vulnerability frontiers where stoichiometric gating and mineral protection are overridden, while recovery is constrained by kinetic and architectural hysteresis. Thus, it recommends a shift away from stock‐ and input‐centric C farming toward process‐centric C defense, emphasizing the protection of slow‐cycling, kinetically protected pools under increasing turnover.
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