1. Arsenic burden in e-waste recycling workers – A cross-sectional study at the Agbogbloshie e-waste recycling site, Ghana.
- Author
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Yang, Jennie, Bertram, Jens, Schettgen, Thomas, Heitland, Peter, Fischer, Damian, Seidu, Fatima, Felten, Michael, Kraus, Thomas, Fobil, Julius N., and Kaifie, Andrea
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ARSENIC , *ELECTRONIC waste , *CROSS-sectional method , *HAZARDOUS substances , *ARSENIC in water , *HEAVY metals , *ELECTRONIC waste management - Abstract
The export of e-waste from industrialized to developing countries has led to the formation of a large-scale informal e-waste recycling sector in Accra, Ghana. During recycling processes, workers are exposed to several hazardous substances, such as heavy metals. As a common component of e-waste, inorganic arsenic can be released during e-waste recycling processes. The aim of this study was to assess the exposure to inorganic arsenic species in e-waste workers compared to a control group. N = 84 e-waste workers and n = 94 control subjects were included in this analysis. Inorganic arsenic species were determined in urine samples using HPLC-ICP-MS. E-waste workers showed higher median concentrations of As(III), As(V), MMA, DMA and the sum of inorganic arsenic in comparison to the control group. More than 80% of the e-waste workers exceeded the acceptable concentration (14 μg/L), which was significantly higher in comparison to the control group (70%). The tolerable concentration (40 μg/L) was exceeded in 17.2% of the participants, meaning a statistically relevant risk of developing cancer due to arsenic exposure throughout their (working) life. In conclusion, the exposure to inorganic arsenic is not only a problem of informal e-waste recycling, but a major public health concern that needs further investigation. • E-waste workers showed higher levels of inorganic arsenic compared to controls. • Burners had highest levels of inorganic arsenic in the e-waste group. • Inorganic arsenic concentrations in almost all workers exceeded the acceptable risk. [ABSTRACT FROM AUTHOR]
- Published
- 2020
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