Impact of Wastes on Some Properties of Soil around an Active Dumpsite in Ibadan, Southwestern Nigeria

O. O. Akintola, G. O. Adeyemi, O. S. Olokeogun, I. A. Bodede
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Abstract

Recently most farmers in developing country like Nigeria has resulted to the use of solid wastes as compost to replenish the deteriorated soils while some are farming on the abandoned waste dumpsite due to their richness in organic matter. This study assessed the soil nutrient and fertility status by investigating the influence of wastes (if any) on physical and chemical properties of soils in and around Lapite dumpsite for environmental sustainability. Ten soil samples each collected from three locations: dumpsite, downslope and upslope sites at depth of 0-20cm were analyzed for soil texture, bulk density, porosity, electrical conductivity, pH, organic carbon, organic matter content (OMC), total nitrogen (TN), available phosphorus (AP), Na, K, Ca, Mg, Fe, Zn, Cu, Pb and Ni. Significant differences were observed on soil physical: moisture content (18.05-38.11 %); Bulk density (1.01-1.54 g/cm3); porosity (49.09-74.56 %) and chemical properties: : OMC (1.39-5.98 %);TN (0.58-1.60 %); AP(0.35-1.09 %) among others in soils from the studied location sites at p ≤ 0.05; however, no remarkable impact was noticed on soil texture. This study has shown that deposition of wastes has impacted the physical and chemical properties by improving soil organic matter contents and increasing nutrient contents such as exchangeable bases and micronutrient, thus enhancing soil organic matter, fertility and productivity status of the soil for maximum plant growth. However, increase in heavy metal concentrations in dumpsite soils call for incessant assessment and monitoring, thus sorting, reuse and recycling should be encouraged to reduce the metal loads over time.
废物对尼日利亚西南部伊巴丹活跃垃圾场周围土壤某些性质的影响
最近,像尼日利亚这样的发展中国家的大多数农民已经开始使用固体废物作为堆肥来补充恶化的土壤,而一些人则在废弃的垃圾场上耕作,因为那里富含有机物。本研究通过调查废物(如果有的话)对Lapite垃圾场及其周围土壤物理和化学性质的影响来评估土壤养分和肥力状况,以实现环境的可持续性。在0 ~ 20cm深度,从垃圾场、下坡和上坡3个地点采集10个土壤样品,分析土壤质地、容重、孔隙度、电导率、pH、有机碳、有机质含量(OMC)、全氮(TN)、速效磷(AP)、Na、K、Ca、Mg、Fe、Zn、Cu、Pb和Ni。土壤物理含水率差异显著(18.05 ~ 38.11%);容重(1.01-1.54 g/cm3);孔隙率(49.09- 74.56%)和化学性质:OMC (1.39- 5.98%);TN (0.58- 1.60%);研究地点土壤AP(0.35 ~ 1.09%), p≤0.05;但对土壤质地无显著影响。本研究表明,废弃物沉降通过提高土壤有机质含量,增加交换性碱和微量元素等养分含量,影响土壤理化性质,从而提高土壤有机质、肥力和生产力状态,促进植物最大限度地生长。然而,垃圾场土壤中重金属浓度的增加需要不断进行评估和监测,因此应鼓励分类、再利用和再循环,以减少长期的金属负荷。
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