Heavy metals occurrence, assessment and distribution in water resources of the lead–zinc mining areas of Abakaliki, Southeastern Nigeria
Autor: | B. E. B. Akudinobi, P. N. Obasi |
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Rok vydání: | 2019 |
Předmět: |
Wet season
Pollution Environmental Engineering media_common.quotation_subject 010501 environmental sciences Contamination 01 natural sciences law.invention Water resources law Environmental chemistry Dry season Environmental Chemistry Environmental science Ecotoxicology General Agricultural and Biological Sciences Atomic absorption spectroscopy Surface water 0105 earth and related environmental sciences media_common |
Zdroj: | International Journal of Environmental Science and Technology. 16:8617-8638 |
ISSN: | 1735-2630 1735-1472 |
Popis: | The assessment, occurrence and distribution of heavy metals in water resources of the lead–zinc mining areas of Abakaliki, Southeastern Nigeria, were carried out. Major communities including Enyigba, Mkpuma Akpatakpa, Ameka, Amorie, Amanchara and Alibaruhu where active and abandoned mines are located were assessed. This study compared the prevalence of these metals in the different mining communities. One hundred and six water samples were analyzed in two seasons using Atomic Absorption Spectrophotometer and Ultra-Violet/Visible Spectroscopy. Results were compared with World Health Organization Standard (WHO) for drinking water. Result indicates high concentrations with ranges: Mn2+ (63.45 mg/L), Pb2+ (11.42 mg/L), Cr3+ (14.60 mg/L), Ni2+ (1.260), Cd2+ (15.67 mg/L), Ag+ (6.06 mg/L), Hg2+ (2.60 mg/L), As (4.13 mg/L), Se2+ (2.68 mg/L), Zn2+ (10.53 mg/L), Co2+ (0.9 mg/L). These are above the WHO recommended standard for drinking water. Only Cu2+ and Se2+ recorded safe concentrations in 100% samples analyzed in both surface and groundwater in the rainy season. Percentage contamination shows Pb2+ > Hg2+ > As2+ > Cd2+ > Mn2+ > Ag2+ > Se2+ > Ni2+ > Cr2+>Cu2+especially in areas close to the active mines. Surface water resources recorded higher contamination. However, Pb2+, As, Hg2+, Se2+ and Cd2+ showed high percentage of contamination in groundwater samples. The Ameka and Mkpuma Akpatakpa mining areas recorded higher concentrations of the hydrogeochemical constituents than the Enyigba, Ameka and Amorie mining regions. Seasonal analysis shows a decreased concentration of chemical constituents in the rainy season relative to the dry season. |
Databáze: | OpenAIRE |
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