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首页> 外文期刊>Physical Science International Journal >Geochemical and Geotechnical Characteristics of Soil within Oke-diya Dumpsite in Sagamu South Western Nigeria
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Geochemical and Geotechnical Characteristics of Soil within Oke-diya Dumpsite in Sagamu South Western Nigeria

机译:尼日利亚西南部Sagamu的Oke-diya垃圾场内土壤的地球化学和地球技术特征

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摘要

This research was to determine geotechnical and geochemical characteristics of soil around Oke diya dumpsite in Sagamu Southwestern Nigeria. Five soil samples were collected within dumpsite at depth of 0-20 cm to determine their engineering properties in accordance with the British Standards. Another eight (8) soil samples were collected vertically at the depth of 1m interval for geochemical analysis using Inductively Coupled Plasma-Mass Spectrophotometer method (ICP MS). The specific gravity value ranges between 2.78–3.00 which fall within moderate degree of laterization and dehydration. The soil generally can be classified as silty sand of intermediate to high plasticity or compressibility based on the percentage grain size distribution and Casagrande Plasticity Chart. Permeability tests showed low permeability within the range of 1.8 x 10-6 cm/s – 2.12 x 10-6 cm/s. Therefore the soil has capacity to provide long term protection of groundwater by natural attenuation as a result of the thickness of the unsaturated zone, high silt content and low permeability. Thirty one elements were determined in the soil samples. The relative abundance of the major and significant trace elements followed the order Al > Fe > K > Mg > Ca > Ti > Na > S > P and V > Mn > Cr > Ba > Sr > Cu > Zn > Pb > Zr > Ni > Sc > Y > Co > Mo respectively. There was a general trend of decrease in metals concentration as the depth of sampling increases. Result of geo-accumulation index showed that the soil samples were practically uncontaminated with Mn, Ni, Zn, Ba, Cr, Sc, Co, Sr, Cu, Zr and Y, practically to moderately contaminated with Pb and V and was moderately contaminated with Mo. Other contamination assessment showed that the soil fall within low contamination factor with all the trace elements except with Pb which falls within moderately contamination.
机译:这项研究旨在确定尼日利亚西南部Sagamu的Oke diya垃圾场周围土壤的地球工程和地球化学特征。根据英国标准,在垃圾场的0-20厘米深度处收集了五个土壤样品,以确定它们的工程特性。使用感应耦合等离子体-质谱分光光度计法(ICP MS)以1m的间隔垂直收集另外八(8)个土壤样品进行地球化学分析。比重值在2.78–3.00之间,处于适中的迟熟和脱水程度。根据粒度分布百分比和卡萨格兰德可塑性表,通常将土壤分类为中等至高可塑性或可压缩性的粉砂。渗透性测试显示低渗透性在1.8 x 10 -6 cm / s到2.12 x 10 -6 cm / s的范围内。因此,由于非饱和带的厚度,高淤泥含量和低渗透性,土壤具有通过自然衰减对地下水提供长期保护的能力。在土壤样品中确定了31种元素。主要和重要微量元素的相对丰度依次为Al> Fe> K> Mg> Ca> Ti> Na> S> P和V> Mn> Cr> Ba> Sr> Cu> Zn> Pb> Zr> Ni > Sc> Y> Co> Mo随着采样深度的增加,金属浓度总体呈下降趋势。地积累指数的结果表明,土壤样品几乎未受到Mn,Ni,Zn,Ba,Cr,Sc,Co,Sr,Cu,Zr和Y的污染,几乎受到Pb和V的中等污染,而受到Pb和V的中等污染。 Mo.其他污染评估表明,除Pb属于中等污染范围外,所有微量元素均使土壤处于低污染因子范围内。

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