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Author

Md.Nakib Hossen

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Open access Aug 2026

Geochemistry, sources, human health and ecological risk of trace elements in soil from the Mirsarai export processing zone, southeastern coast of Bangladesh

Rapid industrial growth in Export Processing Zones (EPZs) has intensified concerns regarding trace element accumulation in soils and its environmental consequences. This study quantified twelve trace elements in soils from the Mirsarai Export Processing Zone using Inductively Coupled Plasma-Mass Spectrometry (ICP-MS) to evaluate contamination status, spatial distribution, potential sources, and associated ecological and human health risks. The results revealed significant enrichment of all trace elements except Fe, with pollution indices and spatial analysis indicating considerable contamination and heterogeneous distribution across the study area. Pearson correlation and principal component analysis (PCA) suggested that elevated trace element concentrations were primarily associated with industrial waste inputs. Ecological risk assessment identified Se as the dominant contributor (ER = 601.40), followed by As (149.85) and Hg (106.45). An innovative Source-Pathway-Receptor (SPR) model linked industrial activities with contaminant transport and environmental risks, identifying textile dyeing, leather processing, electroplating, battery manufacturing, metal finishing, and electronics industries as the principal sources of As, Cr, Cu, Zn, Pb, Cd, Ni, and Co. Non-carcinogenic risk assessment showed that Co posed the highest risk to children (HI = 8.54), followed by Mn (2.62), Cr (2.05), and As (1.45), whereas only Co exceeded the acceptable threshold for adults (HI = 2.25). Children experienced approximately 3.1-fold higher carcinogenic risk than adults, with Ni, Cr, and As exceeding the USEPA acceptable limit (1.0E−04). Monte Carlo simulation further confirmed a mean total carcinogenic risk of 1.58E−04 for children, highlighting the urgent need for pollution control and sustainable environmental management in rapidly industrializing EPZs.

M. S. Rahman, M. Uddin, M. Moniruzzaman et al. · 0 citations
Open access Jul 2026

Analysis of heavy metals, bioactive components, and non-carcinogenic and carcinogenic health risk assessment based on drying methods in medicinal plants of Bangladesh

Traditional medicinal plants are widely used for therapeutic, nutritional, and cosmetic applications, yet their safety and quality remain major concerns due to possible contamination and processing related degradation. This study evaluates the physicochemical properties, antioxidant activity, and heavy metal-associated health risks of nine medicinal plant species commonly used in Bangladesh-ILCR, Phyllanthus emblica, Withania somnifera (leaf and root), Terminalia arjuna, Justicia adhatoda, Ocimum sanctum Linn., Hibiscus rosa-sinensis, Psidium guajava Linn., and Azadirachta indica processed through heat pump and traditional sun drying methods. Moisture, protein, and total phenolic contents were determined alongside DPPH radical scavenging activity to assess bioactive compound preservation. Heavy metal concentrations (Pb, Cd, Cr, Mn, As, Ni, and Se) were quantified via Graphite Furnace Atomic Absorption Spectroscopy (GF-AAS), and non-carcinogenic (HQ, HI) and carcinogenic (ILCR) health risks were estimated following USEPA guidelines. Results revealed that heat pump drying significantly enhanced protein and phenolic retention while reducing residual moisture compared to sun drying. DPPH assays confirmed superior antioxidant activity (up to 88% scavenging at 200 µg/mL) in heat pump dried samples. Heavy metal concentrations in all samples were below permissible limits, with HQ, HI, and ILCR values indicating negligible non-carcinogenic and carcinogenic risks. Heat pump drying demonstrated enhanced preservation efficiency of nutritional and bioactive components while minimizing contamination risks. These findings provide strong scientific evidence supporting the adoption of controlled heat pump drying for safer, higher-quality, and more efficacious herbal product development in Bangladesh and beyond.

Sadia Afrin, Abdullah Al Mamun, Hayatullah et al. · 0 citations

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