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Macro- and micro-aggregate stability of soils determined by a combination of wet-sieving and laser-ray diffraction

机译:湿筛和激光衍射结合测定土壤的宏观和微观集料稳定性

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摘要

Soil structural stability affects the profitability and sustainability of agricultural systems. Different-sized structural units have different stability mechanisms and respond differently to such external factors as rain, wind, irrigation and management. A comprehensive analysis of the soils structural stability requires its characterization at the tnacro-and micro-aggregate scales. We determined the aggregate stability of 36 soils at the macro-aggregate scale using wet-sieving methods and of 20 soils at the micro-aggregate scale using laser-ray diffraction techniques. All the tests gave consistent estimates of aggregate stability. Most soils were homogeneous and quite stable at the macro-aggregate level as determined by the water stable aggregate parameter, but differed significantly among them and were quite unstable at the micro-aggregate level as determined by the mean weight diameter of micro-aggregates parameter. Slaking induced by the fast wetting of aggregates was the main destabilizing mechanism in these soils (88 percent of the soils had slaking stability index values < 0.5), whereas most soils were quite tolerant to the mechanical shaking of aggregates (89 percent of the soils had stirring stability index values >0.5). The combination of the macro- and micro-aggregate stability tests is a consistent way for describing the structural stability of the studied soils.
机译:土壤结构的稳定性会影响农业系统的盈利能力和可持续性。不同规模的结构单元具有不同的稳定机制,并且对雨,风,灌溉和管理等外部因素的响应也不同。要对土壤的结构稳定性进行全面分析,需要在微颗粒和微骨料尺度上对其进行表征。我们使用湿筛分法确定了宏观集聚规模的36种土壤的团聚稳定性,使用激光衍射技术确定了微观集聚体规模的20个土壤的团聚稳定性。所有测试均给出了骨料稳定性的一致估计。根据“水稳定集料”参数确定,大多数土壤均质且在宏观集料水平上相当稳定,但在它们之间存在显着差异,而在由“平均粒径”确定的微观集料水平上非常不稳定。聚集体参数。骨料的快速润湿引起的崩解是这些土壤的主要失稳机理(88%的土壤的崩解稳定性指数值<0.5),而大多数土壤对骨料的机械振动具有相当的耐受力(89%的土壤具有抗振性)。搅拌稳定性指数值> 0.5)。宏观和微观集料稳定性测试的组合是描述所研究土壤结构稳定性的一致方法。

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