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Assessment of Soil Fertility Status of Different Types of Soils in Selected Areas of Southern Ethiopia

机译:埃塞俄比亚南部某些地区不同类型土壤的土壤肥力状况评估

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A soil fertility assessment study was conducted in Luvic Calcisols (Siltic), Haplic Calcisols (Chromic), Haplic Calcisols (Humic), Haplic Luvisols (Humic), Andic Lixisols (Humic), Andic Cambisols (Humic), Haplic Lixisols (Siltic) and Haplic Lixisols (Humic) in the southern part of Ethiopia to investigate their fertility status. Soil samples were collected randomly from 0-15cm and 15-30cm depths using augur with three replications on farmers’ fields representing the above soil types. The samples were air dried, crushed to pass 2 mm sieve and analyzed for pH, OC, CaCO 3 , CEC, exchangeable bases, total nitrogen, available phosphorus, Zn, Cu, Fe and Mn contents. The results revealed that the above soil properties varied between soil types and depths. The OC and CEC contents were varied between moderate and high, whereas CaCO 3 was ranged from low to high increasing with depth. The total nitrogen content was ranged from low (<0.2%) to medium (0.2-0.5%), whereas available phosphorus was medium (8-18 mg kg -1 soil). The micronutrients contents were decreased with depth and they were low in most of the soils. Organic carbon was positively correlated with total nitrogen and CEC indicating that application of organic materials can improve soil fertility in these soils. In conclusion, soil fertility management practices that can improve micronutrients and a study on nutrient placement for growth of different crops should be carried out in the study soils.
机译:在Luvic Calcisols(Siltic),Haplic Calcisols(Chromic),Haplic Calcisols(Humic),Haplic Luvisols(Humic),Andic Lixisols(Humic),Andic Cambisols(Humic),Haplic Lixisols(Siltic)和在埃塞俄比亚南部的Haplic Lixisols(Humic)调查其生育状况。使用a钻从0-15cm和15-30cm深度随机收集土壤样品,并在代表上述土壤类型的农民田地上进行了三次重复。将样品风干,压碎以通过2毫米筛,分析其pH,OC,CaCO 3,CEC,可交换碱,总氮,有效磷,Zn,Cu,Fe和Mn的含量。结果表明,上述土壤性质随土壤类型和深度的变化而变化。 OC和CEC含量在中高之间变化,而CaCO 3随深度增加从低到高变化。总氮含量范围从低(<0.2%)到中等(0.2-0.5%),而有效磷为中等(8-18 mg kg -1土壤)。微量营养素含量随着深度的增加而降低,并且在大多数土壤中都较低。有机碳与总氮和CEC呈正相关,表明有机材料的施用可以改善这些土壤的肥力。总之,应在研究土壤中进行能够改善微量营养素的土壤肥力管理措施,并研究不同作物生长所需的营养素。

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