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January 20, 2026Journal of Chemistry3 citationsOpen Access

Heavy Metal Contamination in Chocolates and Candies: Sources, Health Risks, and Analytical Insights

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MAMunir AhmedMMaryamAAAsad Aslam

Key Points

  • This review aims to consolidate evidence regarding heavy metal contamination in chocolates and candies and its health risks.
  • Comprehensive review of existing literature on heavy metals in confectionery products.
  • Evaluation of sources such as raw materials and packaging that contribute to contamination.
  • Assessment of health risks associated with prolonged exposure to metals like Pb and Cd.
  • Analysis of analytical methods such as ICP-MS and AAS for metal detection.
  • Pb and Cd identified as the most prevalent heavy metal contaminants in chocolates and candies.
  • Exposure linked to severe health issues including neurotoxicity and developmental impairments in children.
  • Significant discrepancies found between allowed limits of heavy metals and concentrations detected in products.
  • Recommendation for increased regulatory compliance and global monitoring standards.

Abstract

The presence of heavy metals in chocolates and candies poses growing public health concerns, particularly for children who are frequent consumers. This review consolidates evidence on the occurrence, sources, toxicological impacts, and analytical monitoring of metals, including Pb, Cd, Hg, As, Cr, Ni, and Al, in confectionery products. These metals originate from multiple pathways, including environmental contamination of raw materials, processing equipment, coloring agents, and metallic packaging. Prolonged exposure, even at low concentrations, has been associated with neurotoxicity, nephrotoxicity, carcinogenicity, and developmental impairments. Comparative evaluation highlights Pb and Cd as the most prevalent contaminants, with Cd bioaccumulating in the kidneys and Pb causing irreversible neurological damage in children. Modern spectroscopic and chromatographic methods, including ICP‐MS, TXRF, and AAS, provide sensitive detection and quantification of metals, supporting regulatory compliance. However, disparities between permissible limits and detected concentrations in several studies emphasize weak enforcement and the need for standardized global monitoring protocols. The review also identifies major research gaps, limited region‐specific exposure data, inadequate assessment of combined metal toxicity, and a lack of longitudinal studies linking chronic exposure to contaminated confectionery and health outcomes. Strengthening analytical surveillance, adopting sustainable raw materials, and implementing safer packaging alternatives are essential to minimize heavy metal exposure and safeguarding consumer health.

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Cite This Study

Ahmed et al. (2026) studied this question.

synapsesocial.com/papers/696f1a239e64f732b51ee75dhttps://doi.org/10.1155/joch/5580095
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