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Soil nutrient assessment based on attribute recognition model in the Loess Plateau of China

机译:基于属性识别模型的黄土高原土壤养分评估

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摘要

Soil fertility is important factors for growth and productivity of vegetation. The relationship between vegetation and soil fertility deserves attention due to its scientific importance and practical applications. However, the effects of soil fertility on vegetation development and succession are poorly documented. Here we study soil fertility in Yanhe watershed at northern Shaanxi on five different land uses, namely shrubland, farmland, natural grassland, woodland, and artificial grassland, and in soil under restoration for 5, 10, 15, 20, and 25. Attribute recognition model based on entropy weight was used to evaluate the soil fertility of typical region in the Loess Plateau of China, which contained 52 soil samples with 6 physical and chemical indexes, including soil organic matter, soil total nitrogen, total phosphorus, etc. The results show that (1) Land use has an obvious effect on soil bulk density, total porosity and capillary porosity of surface layers, but not significant in the subsurface layer; (2) SOM, Ntotal, Nhydro and Kavail are the most in shrubland and woodland while Ptotal and Pavail in farmland, respectively; (3) Vegetation succession on eroded soil result in significant changing of soil fertility; and (4) Vegetation succession on eroded soil result in significant changing of soil fertility.
机译:土壤肥力是影响植被生长和生产力的重要因素。植被与土壤肥力之间的关系由于其科学重要性和实际应用值得关注。但是,关于土壤肥力对植被发育和演替的影响的文献很少。在这里,我们研究了陕北延河流域的灌木,农田,天然草地,林地和人工草地这五种不同土地利用的土壤肥力,以及5、10、15、20和25的恢复土壤。利用熵权模型对黄土高原典型地区的土壤肥力进行了评价,该模型包含52个具有6个理化指标的土壤样品,包括土壤有机质,土壤总氮,总磷等。结果表明:(1)土地利用对表层土壤容重,总孔隙度和毛细孔隙度有明显影响,但在表层以下并不明显; (2)SOM,Ntotal,Nhydro和Kavail在灌木林和林地中最多,而Ptotal和Pavail在农田中最多; (3)侵蚀土壤的植被演替导致土壤肥力发生重大变化; (4)侵蚀土壤的植被演替导致土壤肥力发生重大变化。

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