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Submicron structures provide preferential spots for carbon and nitrogen sequestration in soils

机译:亚微米结构为土壤中碳和氮的固存提供了优先点

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摘要

The sequestration of carbon and nitrogen by clay-sized particles in soils is well established, and clay content or mineral surface area has been used to estimate the sequestration potential of soils. Here, via incubation of a sieved (<2 mm) topsoil with labelled litter, we find that only some of the clay-sized surfaces bind organic matter (OM). Surprisingly, <19% of the visible mineral areas show an OM attachment. OM is preferentially associated with organo-mineral clusters with rough surfaces. By combining nano-scale secondary ion mass spectrometry and isotopic tracing, we distinguish between new labelled and pre-existing OM and show that new OM is preferentially attached to already present organo-mineral clusters. These results, which provide evidence that only a limited proportion of the clay-sized surfaces contribute to OM sequestration, revolutionize our view of carbon sequestration in soils and the widely used carbon saturation estimates.
机译:土壤中的黏土大小的颗粒对碳和氮的螯合是公认的,并且已使用黏土含量或矿物表面积来估计土壤的螯合潜力。在这里,通过筛分(<2mm)的表层土和带标签的垫料的孵育,我们发现只有一些粘土大小的表面结合有机物(OM)。令人惊讶的是,少于19%的可见矿物质区域显示OM附着。 OM优先与具有粗糙表面的有机矿物质簇相关。通过结合纳米级二次离子质谱和同位素示踪,我们区分了新的标记OM和预先存在的OM,并表明新OM优先附着在已经存在的有机矿物质簇上。这些结果提供了证据,表明只有有限比例的黏土大小的表面有助于OM螯合,这彻底改变了我们对土壤中碳固存的看法以及广泛使用的碳饱和度估计。

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