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首页> 外文期刊>Chemical Science International Journal >Chemical Fractionation of Copper, Manganeseand Zinc in Dumpsite Soil Samples in KadunaMetropolis, Nigeria
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Chemical Fractionation of Copper, Manganeseand Zinc in Dumpsite Soil Samples in KadunaMetropolis, Nigeria

机译:尼日利亚卡杜纳大都会垃圾场土壤样品中铜,锰和锌的化学分馏

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Aims: In this research, sequential chemical extractions were performed to fractionate copper, manganese and zinc in dumpsite soil samples into six geochemical fractions with varying mobility and bioavailability.Study Design: Determination of chemical forms of metals in soils and evaluation of their mobility and bioavailability.Place and Duration of Study: This study was conducted between March, 2011 and June, 2013 in the Department of Chemistry, Ahmadu Bello University, Zaria, Nigeria.Methodology: Collection of soil samples from Kawo (KW), Rafin Guza (RG), Angwan Dosa (AD), Badarawa (BD), Malali (ML), Angwan Shanu (AS), Kurmi Mashi (KM), Tudun Wada (TW), Kakuri (KK) and Trikania (TK) dumpsites; sequentially extraction of samples into six fractions and determination of metal concentrations in extracts.Results: Copper had high mobility factor values in the rainy season at TK (43.76%), TW (13.51%), AS (13.48%) and ML (0.14%); and in the dry season at TK (44.79%), KW (14.65%), AS (14.18%), ML (13.43%) and TW (13.31%). Manganese in the rainy season recorded relatively high mobility values at KK (2.18%), AD (2.07%), and TW (1.67%) and in the dry season at ML (2.57%), BD (2.23%), KK (2.06%) and TW (1.51%) while Zinc had high mobility values in the rainy season at BD (54.14%), AS (26.62%), KM (18.08%), TK (16.11%), ML (5.88%) and KK (3.54%) and in the dry season at RG (145.79%), BD (44.59%), AS (31.08%), KM (21.65%) and TK (18.19%). Copper and zinc were distributed evenly across the non-residual and residual fractions, while manganese was predominantly retained by residual fractions. The mobility and potential bioavailability of the metals in decreasing order is: zinc > Copper > Manganese.Conclusions: The amount of metals bound to each fraction differed significantly according to metal type, dumpsites and seasons. The study indicates the tendency for bioavailability of the metals studied for plant uptake from soil.
机译:目的:在这项研究中,进行了顺序化学提取,将垃圾场土壤样品中的铜,锰和锌分为六个具有不同迁移率和生物利用度的地球化学馏分研究设计:确定土壤中金属的化学形式并评估其迁移率和生物利用度研究地点和持续时间:该研究于2011年3月至2013年6月在尼日利亚Zaria的Ahmadu Bello大学化学系进行。方法:从Kaawo(KW),Rafin Guza(RG)收集土壤样品,昂万多萨(AD),巴达拉瓦(BD),马拉里(ML),昂万沙努(AS),库尔米·玛希(KM),图敦瓦达(TW),卡库里(KK)和特里卡尼亚(TK)垃圾场;结果:在雨季,铜的迁移率值较高,分别为TK(43.76%),TW(13.51%),AS(13.48%)和ML(0.14%)。 );在旱季,TK(44.79%),KW(14.65%),AS(14.18%),ML(13.43%)和TW(13.31%)。雨季锰的迁移率值相对较高,分别为KK(2.18%),AD(2.07%)和TW(1.67%),而旱季的ML(2.57%),BD(2.23%),KK(2.06) %)和TW(1.51%),而雨季锌在BD(54.14%),AS(26.62%),KM(18.08%),TK(16.11%),ML(5.88%)和KK时具有较高的迁移率值(3.54%),而在旱季,RG(145.79%),BD(44.59%),AS(31.08%),KM(21.65%)和TK(18.19%)。铜和锌均匀地分布在非残留和残留部分中,而锰主要被残留部分保留。这些金属的迁移率和潜在生物利用度从大到小依次为:锌>铜>锰。结论:根据金属类型,垃圾场和季节,结合到每个馏分上的金属量差异很大。该研究表明所研究的金属从土壤中吸收植物的金属的生物利用度趋势。

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