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Assessment of soil degradation and chemical compositions in Rwandan tea-growing areas

机译:卢旺达茶产区土壤退化和化学成分评估

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This study has focused on the processes of soil degradation and chemical element concentration in tea-growing regions of Rwanda, Africa. Soil degradation accelerated by erosion is caused not only by topography but also by human activities. This soil degradation involves both the physical loss and reduction in the amount of topsoil associated with nutrient decline. Soil samples were collected from eleven tropical zones in Rwanda and from variable depth within each collecting site. Of these, Samples from three locations in each zone were analyzed in the laboratory, with the result that the pH of all soil samples is shown to be less than 5 (pH<5) with a general average of 4.4. The elements such as iron (Fe), copper (Cu), manganese (Mn), and zinc (Zn) are present in high concentration levels. In contrast calcium (Ca) and sodium (Na) are present at low-level concentrations and carbon (C) was found in minimal concentrations. In addition, elements derived from fertilizers, such as nitrogen (N), phosphorous (P), and potassium (K) which is also from minerals such as feldspar, are also present in low-level concentrations. The results indicate that the soil in certain Rwandan tea plantations is acidic and that this level of pH may help explain, in addition to natural factors, the deficiency of some elements such as Ca, Mg, P and N. The use of chemical fertilizers, land use system and the location of fields relative to household plots are also considered to help explain why tea plantation soils are typically degraded.
机译:这项研究的重点是非洲卢旺达茶区的土壤退化和化学元素浓度变化过程。侵蚀加速的土壤退化不仅是由地形引起的,而且还包括人类的活动。这种土壤退化既涉及物理损失,也涉及与养分减少相关的表土减少。从卢旺达的11个热带地区以及每个采集点的不同深度采集土壤样品。其中,在实验室中分析了每个区域中三个位置的样品,结果显示所有土壤样品的pH值均小于5(pH <5),平均平均值为4.4。铁(Fe),铜(Cu),锰(Mn)和锌(Zn)等元素含量高。相反,钙(Ca)和钠(Na)含量较低,而碳(C)含量最低。另外,还以低浓度存在源自化肥的元素,例如氮(N),磷(P)和钾(K),也来自矿物(例如长石)。结果表明,卢旺达某些茶园的土壤是酸性的,这种pH值除了有助于自然因素外,还可以帮助解释某些元素(如Ca,Mg,P和N)的缺乏。使用化学肥料,还考虑了土地利用系统和田地相对于家庭居住地的位置,以帮助解释为什么茶园土壤通常会退化。

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