Geochemical Distribution and Health Risk Assessment of Heavy Metals in Volcanic Soils of Abwor-dyis, Gu Volcanic Line, Jos Plateau, Nigeria.
Keywords:
Volcanic Soils; Heavy Metals; Cadmium; Arsenic; Ecological Risk Assessment; Contamination Indices; Enrichment Factor; Geo-Accumulation Index; Human-Health Risk;Abstract
This study investigates the spatial distribution, contamination levels, and potential
human-health risks associated with heavy metals in volcanic soils of Abwor-Dyis and its
environs within the Pankshin Sheet 190 (NE), north-central Nigeria. Systematic soil
sampling was carried out across representative sites, and the collected samples were
analyzed for selected potentially toxic elements, including copper (Cu), cadmium (Cd),
arsenic (As), chromium (Cr), nickel (Ni), manganese (Mn), cobalt (Co), and zinc (Zn), using
standardized analytical procedures with appropriate quality control. Comprehensive
geochemical characterization was achieved through major and trace element analyses
integrated with multiple environmental assessment indices. The geo-accumulation index
(Igeo), enrichment factor (EF), pollution index (PI), and Hakanson’s ecological risk index
(ERI) were employed to evaluate contamination intensity, toxicity potential, and the
relative contributions of geogenic versus anthropogenic sources. In addition, the
pollution load index (PLI) was used to assess the overall degree of soil contamination,
while the United States Environmental Protection Agency (US EPA) human-health risk
assessment model was applied to estimate non-carcinogenic and carcinogenic risks
through relevant exposure pathways. The results reveal that heavy metal distribution is
largely controlled by the volcanic parent materials, reflecting natural geochemical
enrichment. However, cadmium (Cd) and arsenic (As) exhibit pronounced enrichment and
pose the highest ecological and health-related risks, dominating the overall
contamination profile. Nickel (Ni) and chromium (Cr) constitute a secondary level of
concern, whereas concentrations of most other metals generally fall within natural
background or acceptable geochemical limits. Despite the predominance of natural
controls, the elevated toxicity, mobility, and bioavailability of Cd and As underscore
their environmental significance. The study highlights the need for proactive soil-quality
management in volcanic terrains of the region. Continuous environmental monitoring,
geospatial risk mapping, and targeted phytoremediation strategies are recommended to
reduce long-term exposure risks. Furthermore, assessment of crop uptake—particularly
in tuber and leafy vegetable species—is essential for evaluating food-chain transfer and
for developing evidence-based guidelines to support sustainable agriculture and public
health protection in the study area.
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