尼日利亚查拉瓦河地表水金属的生物利用度研究

A. Uzairu, .. O.J.Okunola, R. J. Wakawa, .. S.G.Adewusi
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引用次数: 18

摘要

由于卡诺市的工业化,位于查拉瓦工业区的更多工业将废物排放到查拉瓦河中,查拉瓦河是农田灌溉用水的主要来源。因此,本研究旨在评估不同季节尼日利亚卡诺查拉瓦河地表水中锌(Zn)、铅(Pb)、铜(Cu)、铬(Cr)和镉(Cd)金属的生物可利用组分。在旱季,大多数金属的浓度显著增加。饮用水中Cu和Zn的浓度在EPA和WHO对这些金属的标准限值内,而Pb、Cr和Cd的浓度高于EPA和WHO的标准限值。金属间关系分析表明,除暖季和旱季外,Cr和Zn在所有季节均呈显著正相关()。这也许可以解释这些金属在特定季节在这些地点的一致变化。Cd与Cu(干热季节)呈显著负相关。发现化学分馏趋势主要是除锌(冷季和旱季)和Cd外所研究的金属微粒部分。除Cd外,所分析的所有金属微粒部分中所占百分比最高。这可能反映了这种金属对直接环境的可用性较低。然而,溶解和流动部分中Cd、Cr和Pb等金属的可利用性反映了更大的趋势,即水生系统和通过食物链进入人类。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bioavailability Studies of Metals in Surface Water of River Challawa, Nigeria
Due to industrialization of Kano City, more industries located within Challawa industrial estate have discharged waste informed of effluents into River Challawa, which is the main source of irrigation water for agricultural land. Hence, this study is aim at assessing the bioavailable fractions of the metals zinc (Zn), lead (Pb), copper (Cu), chromium (Cr) and cadmium (Cd) in surface water of river Challawa, Kano, Nigeria, across seasons. It was found that the concentrations of most metals increased significantly during the dry seasons. Concentrations of Cu and Zn are within the standard limits of EPA and WHO for these metals in drinking water while Pb, Cr, and Cd have their concentrations higher than EPA and WHO standard limits. Analysis of relationship between metals indicated significant positive correlation () between Cr and Zn, in all seasons with exception of warm and dry season. This might explain the consistent variation of these metals in the sites in a particular season. Also, significant negative correlation was observed between Cd and Cu (hot and dry season). The chemical fractionation trends were found to be dominated by particulate fractions of metals studied except Zn (cool and dry season) and Cd. The highest percentages of all metals analysed were found in the particulate fraction with exception of Cd. This could reflect less availability of this metal to the immediate environment. However, availability of metals such as Cd, Cr, and Pb in the dissolved and mobile fractions reflects the greater tendency to become available to the aquatic system and through the food chain to man.
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