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首页> 外文期刊>Journal of food, agriculture & environment >Evaluation of soil physical quality in mollic ustifluvent, typic ustifluvent and typic ustorthent using Dexter's S-theory
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Evaluation of soil physical quality in mollic ustifluvent, typic ustifluvent and typic ustorthent using Dexter's S-theory

机译:用Dexter S-理论评价软体杀虫剂,典型杀虫剂和典型杀虫剂的土壤物理质量

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Soil physical quality is one of the three main aspects of soil quality, beside biological and chemical qualities. Decline in soil physical quality can have serious consequences for biological and chemical properties as well as physical conditions in soils. In this study we applied S-theory developed by Dexter to evaluate physical quality of soils (Mollic Ustifluvent, Typic Ustifluvent and Typic Ustorthent) formed over alluvial and colluvial deposits in North Central Anatolia of Turkey. The S-theory is based on the value of slope S, defined as the slope at the inflection point of water release curve. Being indicative of the extent to which the soil porosity is concentrated into a narrow range of pore sizes, lager values of S are consistent with improved soil physical quality. An area of nine ha was sampled intensively, collecting 168 disturbed and undisturbed soil samples. The S for each sample was calculated from water retention data used with computer program RETention Curve (RETC). Soils were further analyzed for texture, organic matter content (OM), bulk density (BD) and saturated hydraulic conductivity (Ks). Relations between S and soil physical properties were analyzed by regression technique. In contrast to curvilinear positive relation occurred between S and each of sand and silt content of the soils, relationships between S and each of BD, OM and Ks were positively linear. Critical values for S = 0.035 as suggested in the previous studies corresponded in this study to BD = 1.44 Mg m(-3). Bulk density greater than above specified value mostly occurred at the sites with clay loam texture and covers 19% of the study area. It was concluded that S may be used as a soil physical quality index estimator to evaluate combined effect of soil physical properties and processes in the studies of soil quality assessment.
机译:除了生物和化学质量外,土壤物理质量是土壤质量的三个主要方面之一。土壤物理质量的下降会严重影响土壤的生物学和化学特性以及物理条件。在这项研究中,我们应用了德克斯特(Dexter)开发的S理论来评估在土耳其安那托利亚中北部的冲积层和冲积层上形成的土壤的物理质量(Mollic Ustifluvent,Typic Ustifluvent和Typic Ustorthent)。 S理论基于斜率S的值,斜率S定义为放水曲线拐点处的斜率。表示土壤孔隙度集中在狭窄孔径范围内的程度,S的较大值与改善的土壤物理质量一致。对9公顷的土地进行了密集采样,收集了168个受干扰和未受干扰的土壤样本。从与计算机程序RETention曲线(RETC)一起使用的保水数据计算出每个样品的S。进一步分析土壤的质地,有机质含量(OM),堆积密度(BD)和饱和水力传导率(Ks)。利用回归技术分析了S与土壤物理性质之间的关系。与S与土壤中各沙和粉质含量之间呈曲线正相关,而S与BD,OM和Ks之间均呈正线性关系。如先前研究中所建议的,S = 0.035的临界值在本研究中对应于BD = 1.44 Mg m(-3)。大于规定值的堆积密度主要发生在具有粘土壤土质地的部位,占研究区域的19%。可以得出结论,在土壤质量评估研究中,S可以用作土壤物理质量指标估算器,以评估土壤物理性质和过程的综合效果。

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