Sediment evaluation indices point to cadmium and selenium contamination: A simultaneous analysis of potentially toxic elements in the water and sediment along the upper and middle Awash River, Ethiopia

Q2 Environmental Science
Tesfaye Muluye , Seyoum Mengistou , Thomas Hein , Tadesse Fetahi
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引用次数: 0

Abstract

This study presents a simultaneous analysis of potentially toxic elements (PTEs) in the water and sediment of the upper and middle Awash River for the first time. We used standard field and laboratory procedures, sediment assessment indices and guidelines, and multivariate statistical methods to analyze PTEs and assess their possible sources. Water and sediment samples were collected from nine sampling sites, and PTEs were analyzed using the Inductively Coupled Plasma Optical Emission Spectrometer. The PTEs concentrations arranged in descending order in water were Fe>Mn>B>Zn>Cr>Ni>Pb>Cu, ranging between 4.14 ± 2.093 mg L 1 and 0.074 ± 0.016 mg L 1. The level of PTEs in the sediment varied between 24,493.6 ± 16,640.3 mg kg-1 and 0.4 ± 0.2 mg kg-1 and follows the order: Fe>Mn>Cr>Zn>Pb>Ni>B>Se>Co>Cu>Cd>Hg>As. The river-mouth of the upper Awash had the highest concentrations of Mn, Ni, Cr, and Cu in water and Fe, Mn, Cr, Ni, Pb, Co, Se, Cu, Cd, and AS in the sediment. Contamination factor, enrichment factor, and geo-accumulation index showed a very high level of contamination of Se and Cd. The ecological risk index, Nemerow pollution index, and pollution load index also indicated a high ecological risk and pollution by PTEs in the river. The levels of Fe, Pb, Ni, Mn, B, and Cr in the water surpassed Ethiopian/WHO's drinking water guidelines, while the levels of Cd, Hg, and Cr in the sediment exceeded Canadian/Ontario's probable/severe effect levels. This study revealed the presence of ecological degradation at the downstream sites of the upper and middle Awash. The most likely sources of contaminants were identified as small-scale agricultural pollution, residential and commercial waste from towns like Addis Ababa, Merti, and Metehara, and the inflow of Lake Beseka. We recommend an integrated management plan for the Awash River to ensure sustainable use of the water, guarantee the well-being of wildlife, and reduce public health risks.
沉积物评价指数表明存在镉和硒污染:同时分析埃塞俄比亚阿瓦什河中上游沿岸水体和沉积物中的潜在有毒元素
本研究首次对阿瓦什河中上游水体和沉积物中的潜在有毒元素(PTEs)进行了同步分析。我们采用了标准的现场和实验室程序、沉积物评估指数和指南以及多元统计方法来分析 PTEs 并评估其可能的来源。我们从 9 个采样点采集了水样和沉积物样本,并使用电感耦合等离子体光学发射光谱仪分析了 PTEs。水中的 PTEs 浓度从高到低依次为 Fe>Mn>B>Zn>Cr>Ni>Pb>Cu,介于 4.14 ± 2.093 mg L 1 和 0.074 ± 0.016 mg L 1 之间:铁>锰>铬>锌>铅>镍>钴>硒>钴>铜>镉>汞>砷。阿瓦什上游河口的水中锰、镍、铬和铜的浓度最高,沉积物中铁、锰、铬、镍、铅、钴、硒、铜、镉和砷的浓度也最高。污染因子、富集因子和地质累积指数表明,硒和镉的污染程度非常高。生态风险指数、Nemerow 污染指数和污染负荷指数也表明河流的生态风险和 PTE 污染程度较高。水中铁、铅、镍、锰、硼和铬的含量超过了埃塞俄比亚/世界卫生组织的饮用水准则,而沉积物中镉、汞和铬的含量超过了加拿大/安大略省的可能/严重影响水平。这项研究揭示了阿瓦什河中上游下游地区生态退化的问题。最有可能的污染物来源被确定为小规模农业污染、来自亚的斯亚贝巴、梅尔蒂和梅特哈拉等城镇的住宅和商业废物以及贝塞卡湖的流入水。我们建议为阿瓦士河制定一项综合管理计划,以确保水资源的可持续利用,保证野生动物的健康,并降低公共卫生风险。
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来源期刊
Environmental Advances
Environmental Advances Environmental Science-Environmental Science (miscellaneous)
CiteScore
7.30
自引率
0.00%
发文量
165
审稿时长
12 weeks
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