Health Risk Assessment of Heavy Metals in Soil where Medicinal Plants are grown on abandoned mine site in Fefur of Jos East LGA, Plateau State.
Keywords:
Heavy metals, concentration, soil, medicinal plants, growing, Bioaccumulation, environmental Pollution.Abstract
Heavy metal accumulation and biomagnification in abandoned mining environments pose
significant environmental and public health concerns, particularly where contaminated soils
support the growth of medicinal and edible plants. This study assessed the concentration,
spatial distribution, and potential health risks associated with heavy metal contamination in
abandoned tin-mining soils from Fefur, Jos East Local Government Area, Plateau State,
Nigeria. Soil samples were analyzed for seven heavy metals: Manganese (Mn), Copper (Cu),
Lead (Pb), Iron (Fe), Cadmium (Cd), Zinc (Zn), and Nickel (Ni), using Inductively Coupled Plasma
Mass Spectrometry (ICP–MS). The potential non-carcinogenic health risks associated with
the consumption of traditional medicinal plants cultivated in the area were evaluated for
adults and children using Target Hazard Quotients (HQs). The results revealed elevated
concentrations of heavy metals in the mine soils, with mean levels of Mn, Cu, Zn, Fe, Ni, and
Pb exceeding established maximum permissible limits. Notably, Ni and Pb concentrations were
substantially higher than the guideline values recommended by the World Health Organization
(WHO), indicating significant contamination arising from historical mining activities. Elevated
Cu concentrations further confirmed the persistence of mining-derived pollutants within the
soil environment. Geographic Information Systems (GIS)-based interpolation maps showed
pronounced hotspots of Pb, Ni, and Cu around abandoned mine pits and tailings, highlighting
strong anthropogenic influence. Moderate concentrations extending into nearby farmlands
suggest contaminant dispersion through erosion and surface runoff. Although the calculated
HQ values for individual metals were below the critical threshold of one (HQ < 1), indicating
a low likelihood of immediate non-carcinogenic effects, prolonged exposure through
continuous ingestion of contaminated plants may result in metal bioaccumulation and potential
carcinogenic risks. Continuous environmental monitoring and remediation measures are
therefore recommended to safeguard ecosystem and human health.
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