Lead contamination in cocoa and cocoa products: isotopic evidence of global contamination - PubMed (original) (raw)
Lead contamination in cocoa and cocoa products: isotopic evidence of global contamination
Charley W Rankin et al. Environ Health Perspect. 2005 Oct.
Abstract
In this article we present lead concentrations and isotopic compositions from analyses of cocoa beans, their shells, and soils from six Nigerian cocoa farms, and analyses of manufactured cocoa and chocolate products. The average lead concentration of cocoa beans was </= 0.5 ng/g, which is one of the lowest reported values for a natural food. In contrast, lead concentrations of manufactured cocoa and chocolate products were as high as 230 and 70 ng/g, respectively, which are consistent with market-basket surveys that have repeatedly listed lead concentrations in chocolate products among the highest reported for all foods. One source of contamination of the finished products is tentatively attributed to atmospheric emissions of leaded gasoline, which is still being used in Nigeria. Because of the high capacity of cocoa bean shells to adsorb lead, contamination from leaded gasoline emissions may occur during the fermentation and sun-drying of unshelled beans at cocoa farms. This mechanism is supported by similarities in lead isotopic compositions of cocoa bean shells from the different farms (206Pb/207Pb = 1.1548-1.1581; 208Pb/207Pb = 2.4344-2.4394) with those of finished cocoa products (206Pb/207Pb = 1.1475-1.1977; 208Pb/207Pb = 2.4234-2.4673). However, the much higher lead concentrations and larger variability in lead isotopic composition of finished cocoa products, which falls within the global range of industrial lead aerosols, indicate that most contamination occurs during shipping and/or processing of the cocoa beans and the manufacture of cocoa and chocolate products.
Figures
Figure 1
A comparison of average lead concentrations (ng/g) for analyzed cocoa beans, cocoa bean shells, chocolate products, and manufactured cocoa.
Figure 2
Isotopic compositions of analyzed chocolate products and manufactured cocoa compared with those in global aerosols measured by Bollhöfer and Rosman (2000, 2001, 2002).
Figure 3
Isotopic compositions of cocoa bean shells compared with those of soil profile composites.
Figure 4
Isotopic compositions of cocoa bean shells compared with those of chocolate products and manufactured cocoa.
Comment in
- Sources of lead in cocoa and chocolate.
Manton WI. Manton WI. Environ Health Perspect. 2006 May;114(5):A274-5; author reply A275. Environ Health Perspect. 2006. PMID: 16675406 Free PMC article. No abstract available.
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References
- Accum F. 1820. Treatise on the Adulteration of Foods and Culinary Poisons. London:Longman, Hurst, Rees, Orne & Brown.
- Ademuyiwa O, Arowolo T, Ojo DA, Odukoya OO, Yusuf AA, Akinhanmi TF. Lead levels in blood and urine of some residents of Abeokuta, Nigeria. Trace Elem Electrol. 2002;19:63–69.
- Ajayi A, Kamson OF. Determination of lead in roadside dust in Lagos City by atomic absorption spectrophotometry. Environ Int. 1983;9:397–400.
- ATSDR 1999. Toxicological Profile for Lead. Atlanta, GA:Agency for Toxic Substances and Disease Registry. Available: http://www.atsdr.cdc.gov/toxprofiles/tp13.html [accessed 10 February 2005].
- Bahemuka TE, Mubofu EB. Heavy metals in edible green vegetables grown along the sites of the Sinza and Msimbazi rivers in Dar es Salaam, Tanzania. Food Chem. 1999;66:63–66.
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