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Impact of land cover types on soil aggregate stability and erodibility

机译:土地覆盖类型对土壤团聚体稳定性和侵蚀性的影响

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摘要

Gok double dagger eada is the biggest island, and it is also known as the organic island of Turkey. Approximately 65% of the Gok double dagger eada lands have slope 12%. Climate, topography, land cover, and soil characteristics are considered to be the main natural factors affecting soil erosion severity in the Gok double dagger eada. Prevention of soil degradation, hence the preservation or improvement of the overall quality of the soil, is directly related to the presence of stable soil aggregates. In addition, the resistance to weathering and replacement of soil particles are also relevant aspects in terms of sustainability. Aggregate stability (AS) and erodibility of land (Kfac) are related to soil properties. However, this relationship can vary under different circumstances. In this study, 248 surface soil samples have been taken from forest and semi-natural areas (FSNA) and agricultural areas (AGRA) according to CORINE 2006. Eleven selected soil properties were measured, and their impacts on AS and Kfac (RUSLE-K) were determined by using the CRT (classification and regression tree) in Gok double dagger eada. Results showed that the relations among soil characteristics changed according to the land cover classes. Total organic carbon is much more associated with AS in AGRA, while total carbon is associated with AS in FSNA. The effect of calcium carbonate on Kfac was higher than other soil properties when the land cover type was ignored. On the other hand, in AGRA, the effect of between clay content on Kfac was greater than those of FSNA.
机译:Gok双匕首eada是最大的岛屿,也被称为土耳其的有机岛屿。 Gok双匕首eada土地中约有65%的坡度> 12%。气候,地形,土地覆盖和土壤特征被认为是影响Gok双匕首eada土壤侵蚀严重程度的主要自然因素。防止土壤退化,从而保持或改善土壤的整体质量,直接与稳定的土壤聚集体有关。此外,就可持续性而言,耐候性和土壤颗粒替代性也是相关方面。总体稳定性(AS)和土地易蚀性(Kfac)与土壤特性有关。但是,这种关系在不同情况下可能会有所不同。在这项研究中,根据CORINE 2006,从森林和半自然地区(FSNA)和农业地区(AGRA)采集了248个表层土壤样品。测量了11种选定的土壤特性,以及它们对AS和Kfac的影响(RUSLE-K )是使用Gok双匕首eada中的CRT(分类和回归树)确定的。结果表明,土壤特征之间的关系根据土地覆盖类别而变化。总有机碳与AGRA中的AS有关,而总碳与FSNA中的AS有关。当忽略土地覆盖类型时,碳酸钙对Kfac的影响高于其他土壤特性。另一方面,在AGRA中,粘土含量对Kfac的影响大于FSNA。

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