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首页> 外文期刊>Vadose zone journal VZJ >Soil Variability and Biogeochemical Fluxes: Toward a Better Understanding of Soil Processes at the Land Surface
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Soil Variability and Biogeochemical Fluxes: Toward a Better Understanding of Soil Processes at the Land Surface

机译:土壤变异性和生物地球化学通量:朝着更好地了解土地表面的土壤过程

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摘要

Soil biogeochemical fluxes in the vadose zone are characterized by a large degree of variability in space and time. This fact leads to the need for the development and application of appropriate methodologies to better understand the high nonlinearity and complex feedback mechanisms responsible for such fluxes. In this sense, there still exists a lack of knowledge in topics such as the scale dependence of the spatial and temporal variability of the controls on soil moisture and biodegradation rates and the dynamic behavior of flow and transport model parameter, and its association with the presence of roots. Knowledge of the variability of biogeochemical fluxes is needed for assorted applications ranging from natural hazards and environmental pollution risk assessment to agricultural production and water resources management. The contributions to this special section epitomize the ongoing effort toward the characterization, quantification, modeling, and understanding of biogeochemical fluxes in the vadose zone at several spatial and temporal scales. The main progress has been the identification of different controls on soil moisture and biodegradation rates depending on the scale of the study as well as the important dependence of the spatial and temporal variability of biogeochemical fluxes on dynamic properties such as vegetation and weather variables.
机译:波糖区中的土壤化学化学助化剂的特征在于空间和时间的大程度。这一事实导致需要开发和应用适当的方法,以更好地了解负责此类助焊剂的高非线性和复杂的反馈机制。从这个意义上讲,仍然存在缺乏关于诸如土壤水分和生物降解率的控制的空间和时间变异性的尺度依赖性以及流量和运输模型参数的动态行为,以及其与存在的动态行为根。各种应用需要了解生物地球化学势态的可变性,从自然灾害和环境污染风险评估到农业生产和水资源管理。对该特殊部分的贡献阐述了在几种空间和时间尺度的延伸区中对散滤区中生物地质化学通量的表征,定量,建模和理解的持续努力。取决于研究规模的土壤水分和生物降解率的主要进展情况取决于生物地球化学通量对植被和天气变量等动态特性的空间和时间变异性的重要依赖性。

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