土壤学
氧溶胶
环境化学
溶解有机碳
土壤pH值
环境科学
土壤碳
总有机碳
化学
土壤水分
土壤科学
作者
Chenglong Ye,Wenjuan Huang,Steven J. Hall,Shuijin Hu
摘要
Abstract Association of organic carbon (C) with iron (Fe) minerals is one important mechanism for long‐term terrestrial C storage. Yet, specific edaphic variables that directly contribute to Fe‐associated C across diverse soil types are still unclear. Through analyzing soils from the National Ecological Observatory Network (NEON) and other published data, here we show that soil pH primarily controls Fe‐associated C across the globe. Fe‐associated C in most soils ranged from 0 to 20 g kg −1 soil, with a strong increase from pH 4.2 to 3.5, but a small change in soils with pH > 4.2. A microcosm experiment further showed that raising soil pH by liming reduced the formation of Fe‐associated C in an acidic Oxisol. Together, these findings demonstrate the dominant role of soil pH in controlling the abundance of Fe‐associated C.
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