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Hydrological and Physical Changes of Soils Under Cocoa Plantations of Different Ages During the Dry Season in the Transition Zone of Ghana

机译:加纳过渡带干旱时期不同年龄可可林下土壤的水文和物理变化

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The study was conducted at the University of Education, Winneba, Mampong Campus from October, 2007 to March, 2008 to assess the hydrological and physical changes that take place in soils under cocoa plantations of different ages as climate changed through the dry season. The treatments were T1 (control, representing an adjoining grass fallow land), T2 (5-year old cocoa plantation), T3 (4-year old cocoa plantation) and T4 (3-year old cocoa plantation). The parameters measured were: Bulk density, Total porosity, organic matter, gravimetric moisture content, potential evaporation and Net Litter Accumulation (NLA) of the plants. From the results, T2 recorded the highest gravimetric moisture content, porosity, litter fall, organic matter and lowest bulk density and potential evaporation. T1 recorded the lowest and highest values for gravimetric moisture content (3.5%) and evaporation loss of water (249.0mm), respectively, at day 84. Correlation analysis revealed that soil moisture was highly influenced by bulk density, total porosity, potential evaporation and net leaf litter accumulation. Soil moisture storage negatively correlated with potential evaporation (r = -0.987) and bulk density (r = -0.985) but positively correlated with Total porosity (r =0.984) and net litter accumulation (r = 0.941). The proper manipulation of these parameters would ensure good soil moisture retention and better adaptations of cocoa to unfavourable conditions driven by climate change in the Transition Zone of Ghana. Keywords: Gravimetric moisture, potential evaporation, porosity, leaf litter, correlation
机译:这项研究于2007年10月至2008年3月在曼那校区温尼巴教育大学进行,以评估随着干旱季节气候变化,不同年龄可可种植园土壤中发生的水文和物理变化。处理方法为T1(对照,代表相邻的草场),T2(5岁可可种植园),T3(4岁可可种植园)和T4(3岁可可种植园)。测得的参数为:植物的堆积密度,总孔隙率,有机质,重量水分含量,潜在蒸发量和净凋落物累积量(NLA)。从结果来看,T2记录了最高的重量水分,孔隙率,凋落物,有机物以及最低的堆积密度和潜在的蒸发量。在第84天,T1分别记录了重量含水率的最低值和最高值(3.5%)和水分蒸发损失的最大值(249.0mm)。相关分析表明,土壤水分高度受堆密度,总孔隙度,潜在蒸发和水分的影响。净凋落物积累。土壤水分存储与潜在蒸发量(r = -0.987)和堆积密度(r = -0.985)呈负相关,但与总孔隙率(r = 0.984)和枯枝落叶净积累量(r = 0.941)呈正相关。这些参数的正确操作将确保良好的土壤水分保持能力,并使可可更好地适应加纳过渡带气候变化所带来的不利条件。关键词:重量水分潜在蒸发孔隙度凋落物相关性

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