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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Quantifying the rate and depth dependence of bioturbation based on optically-stimulated luminescence (OSL) dates and meteoric~(10)Be
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Quantifying the rate and depth dependence of bioturbation based on optically-stimulated luminescence (OSL) dates and meteoric~(10)Be

机译:基于光学激发发光(OSL)数据和陨石〜(10)Be量化生物扰动的速率和深度依赖性

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Both the rate and the vertical distribution of soil disturbance modify soil properties such as porosity, particle size, chemical composition and age structure; all of which play an important role in a soil's biogeochemical functioning.Whereas rates of mixing have been previously quantified, the nature of bioturbation's depth dependence remains poorly constrained. Here we constrain, for the first time, the relationship between mixing rate and depth in a bioturbated soil in northeast Queensland, Australia using a novel method combining OSL (optically-stimulated luminescence) ages and meteoric beryllium-10 (~(10)Be) inventories.We find that the best fit mixing rate decreases non-linearly with increasing soil depth in this soil and the characteristic length scale of 0.28m over which the mixing coefficient decays is comparable to reported rooting depth coefficients. In addition we show that estimates of surface mixing rates from OSL data are highly dependent on erosion rate and that erosion rate must be constrained if accuratemixing rates are to be quantified.We calculate surface diffusion-like mixing coefficients of 1.8 × 10~(-4) and 2.1 × 10~(-4)m~2 yr~(-1) for the studied soil for two different estimates of soil erosion. ? 2014 The Authors. Earth Surface Processes and Landforms Published by John Wiley & Sons Ltd.
机译:土壤扰动的速率和垂直分布都会改变土壤的性质,例如孔隙度,粒度,化学组成和年龄结构;所有这些因素在土壤的生物地球化学功能中都起着重要作用。尽管先前已经确定了混合速率,但对生物扰动的深度依存性的约束仍然很有限。在这里,我们首次使用结合OSL(光致发光)年龄和铍10(〜(10)Be)的新颖方法,限制了澳大利亚昆士兰州东北部生物扰动土壤中混合速率与深度之间的关系。我们发现,最佳配合比随着土壤深度的增加而非线性降低,混合系数衰减的特征长度标度为0.28m与报道的生根深度系数相当。此外,我们还表明,根据OSL数据估算的表面混合速率高度依赖于侵蚀速率,并且如果要量化准确的混合速率,则必须限制侵蚀速率。我们计算出类似表面扩散的混合系数为1.8×10〜(-4 )和2.1×10〜(-4)m〜2 yr〜(-1)两种不同的土壤侵蚀估算值。 ? 2014作者。约翰·威利父子有限公司(John Wiley&Sons Ltd.)发布的地表过程和地貌

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