首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Rayleigh distillation and the depth profile of C-13/C-12 ratios of soil organic carbon from soils of disparate texture in Iron Range National Park, Far North Queensland, Australia
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Rayleigh distillation and the depth profile of C-13/C-12 ratios of soil organic carbon from soils of disparate texture in Iron Range National Park, Far North Queensland, Australia

机译:澳大利亚昆士兰州远北铁山国家公园瑞利蒸馏和土壤质地不同的土壤中有机碳的C-13 / C-12比的深度剖面

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摘要

A depth- and particle size-specific analysis of soil organic carbon (SOC) and its isotopic composition was undertaken to investigate the effects of soil texture (or particle size) on the depth profile of stable carbon isotopic composition of SOC(delta(13)C(SOC)) in two tropical soils. Depth-specific samples from two soil profiles of markedly different texture (coarse grained and fine grained) were separated into particle size classes and analyzed for the (mass/mass) concentration of SOC (C) and delta(13)C(SOC). Within 1 in of the soil surface, delta(13)C(SOC) in the coarse-textured soil increases by 1.3 to 1.6 parts per thousand, while delta(13)C(SOC) from the fine-textured soil increase by as much as 3.8 to 5.5 parts per thousand. This increasing depth trend in the coarse-textured soil is approximately linear with respect to normalized C, while the increase in the fine-textured soil follows a logarithmic function with respect to normalized C. A model of Rayleigh distillation describing isotope fractionation during decomposition of soil organic matter (SOM) accounts for the depth profile of delta(13)C(SOC) in the fine-textured soil, but does not account for the depth profile observed in the coarse-textured soil despite their similar climate, vegetation, and topographic position. These results suggest that kinetic fractionation during humification of SOM leads to preferential accumulation of C-13 in association with fine mineral particles, or aggregates of fine mineral particles in fine-textured soils. In contrast, the coarse-textured soil shows very little applicability of the Rayleigh distillation model. Rather, the depth profile of delta(13)C(SOC) in the coarse-textured soil can be accounted for by mixing of soil carbon with different isotopic ratios. Copyright (c) 2005 Elsevier Ltd
机译:对土壤有机碳(SOC)及其同位素组成进行了深度和粒度特定分析,以研究土壤质地(或粒度)对SOC(δ(13))稳定碳同位素组成的深度剖面的影响。 C(SOC))在两种热带土壤中。将来自两种质地明显不同(粗粒和细粒)的土壤剖面的深度特定样品分成粒径类别,并分析SOC(C)和delta(13)C(SOC)的(质量/质量)浓度。在土壤表面的1分之一以内,粗纹理土壤中的delta(13)C(SOC)增加了1.3至1.6千分之几,而细纹理土壤中的delta(13)C(SOC)增加了为3.8至5.5千分之几。粗糙结构土壤中的这种增加的深度趋势相对于归一化C近似呈线性,而精细结构土壤的增加相对于归一化C遵循对数函数。Rayleigh蒸馏模型描述了土壤分解过程中的同位素分馏有机质(SOM)解释了细纹理土壤中delta(13)C(SOC)的深度剖面,但不考虑在粗纹理土壤中观察到的深度剖面,尽管它们的气候,植被和地形相似位置。这些结果表明,在SOM腐殖化过程中的动力学分级分离导致C-13与细矿物质颗粒或细矿物质土壤中细矿物质颗粒聚集体的优先积累。相反,粗糙纹理的土壤显示了瑞利蒸馏模型的适用性极低。而是,可以通过混合具有不同同位素比的土壤碳来解释粗糙结构土壤中delta(13)C(SOC)的深度分布。版权所有(c)2005 Elsevier Ltd

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