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Effects of Acacia decurrens willd tree-based farming system on soil quality in Guder watershed, North Western highlands of Ethiopia

机译:金合欢甲基综合林养殖系统对埃塞俄比亚北西部高地Guder流域土壤质量的影响

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Continuous conversion of land for different agricultural production purposes has resulted in degradation of soil resources. Rehabilitating soil quality through sustainable land management is one of the most pressing agendas in agriculture. Hence, this study was conducted to evaluate the trends of major soil quality after the introduction of A. decurrens tree-based farming in Guder watershed. Soil samples were collected from 5 land use types, 2 soil depths, and 3 slope positions with 3 replications and then analysed for selected soil physicochemical quality indicators. Selected soil physicochemical indicators were subjected to three-way ANOVA. The result revealed that the highest clay particles and soil bulk density were recorded at A. decurrens tree farmland and cropland soils, respectively. The maximum soil pH was recorded from natural forest (5.99), subsurface soil layer (5.56) and lower slope (5.57). The lowest soil organic carbon and total nitrogen contents were observed in cropland. Greater AP (13.58) mg kg~(?1) was obtained in the topsoil depth of A. decurrens tree farmland at the lower slope. Among the studied soil quality indicators total nitrogen, cation exchange capacity and soil pH were strongly and positively correlated with soil organic carbon. The finding of this study showed that shifting of cereal based into A. decurrens tree-based farming by smallholder farmers can improve the fertility and health of soils and then boost crop productivity. Therefore, the right integration of A. decurrens tree in the farming system can be an alternative approach to reverse soil quality deterioration in degraded agricultural landscapes of Ethiopia.
机译:不同农业生产目的的土地持续转换导致土壤资源退化。通过可持续土地管理恢复土壤质量是农业最紧迫的议程之一。因此,该研究进行了评估引入 a后重大土壤质量的趋势。 在Guder流域中驯养的树木养殖。从5种土地使用类型,2种土壤深度和3个斜坡位置收集土壤样品,然后分析选定的土壤理化物质质量指标。选择土壤物理化学指标进行三元ANOVA。结果表明,在 a时记录了最高粘土颗粒和土壤堆积密度。 分别去混凝土农田和农田土壤。最大土壤pH从天然森林(5.99),地下土层(5.56)和下斜率(5.57)中记录。在农田中观察到最低土壤有机碳和总氮含量。在蜂巢深度的脂肪深度中获得更大的AP(13.58)mg kg〜(α1)。 在较低坡度的Decurrens Tree Farmland。在研究的土壤质量指标中,总氮气,阳离子交换能力和土壤pH与土壤有机碳呈肯定相关。该研究的发现表明,谷物的转移为 a。 小型农民养殖的基于树农牧业可以改善土壤的生育和健康,然后提高作物生产力。因此,正确集成 a。 养殖系统中的DecuRens树可以是逆转土壤质量恶化的替代埃塞俄比亚农业景观的替代方法。

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