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FERTILITY CHARACTERIZATION OF SOILS AT SIX RESEARCH SITES IN NW CAMEROON

机译:喀麦隆西北六个研究区土壤肥力特征

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Fertility capability of surface (0-20 cm) soils was evaluated at six sites in the North-West Cameroon highlands. Two main soil groups, designated as Classes A and B, were identified based on elevation. The Class A soils from low elevations (600-1178 m) had higher Ca, Mg, K, pH, sorbed less P and were lower in organic carbon and sesquioxides than the highland (> 1200 m) soils. Soil acidity (A1 saturation > 30%) and high P sorption appeared to be the most limiting factors to crop production especially on the Class B soils where the Standard P Requirement exceeded 500 mg kg(-1). Phosphorus sorption data were best described by the Freundlich equation. Amorphous aluminium was the most important determinant of solution P concentration (r = 0.85, p < 0.001) followed by soil organic carbon, (r = 0.80, p < 0.001) at high P rates. Nitrogen deficiency symptoms of maize were pronounced on the Class B soils. Consequently, crop growth and yield were lower on Class B than on Class A soils despite the high organic carbon in B. We hypothesize that the supply of high quality organic material (high in N and low in lignin and polyphenols) at site B through agroforestry and related cropping systems, would improve the fertility of the soil and crop yield.
机译:在喀麦隆西北部高地的六个地点评估了表层土壤(0-20厘米)的肥力。根据海拔高度确定了两个主要的土壤类别,分别称为A类和B类。与高海拔地区(> 1200 m)土壤相比,低海拔地区(600-1178 m)的A类土壤具有较高的Ca,Mg,K,pH,吸附的P,并且有机碳和倍半氧化物的含量较低。土壤酸度(A1饱和度> 30%)和高P吸收似乎是作物生产的最大限制因素,尤其是在B类土壤中,标准P要求超过500 mg kg(-1)。磷吸附数据最好用Freundlich方程描述。在高P速率下,无定形铝是决定溶液P浓度的最重要的决定因素(r = 0.85,p <0.001),其次是土壤有机碳(r = 0.80,p <0.001)。在B类土壤上明显出现了玉米的氮缺乏症状。因此,尽管B类土壤中的有机碳含量较高,但B类土壤的作物生长和产量却低于A类土壤。我们假设通过农林业向B类土壤提供高质量的有机物质(氮含量高,木质素和多酚含量低)。和相关的耕作制度,将提高土壤肥力和农作物产量。

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