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Issue 12, 2004
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Multi-component assessment of worker exposures in a copper refinery
Part 1. Environmental monitoring

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Abstract

The exposure characterisation described in this paper for 135 copper refinery workers (45 females, 90 males) focuses on the concentrations of copper, nickel and other trace elements in the inhalable aerosol fractions, as well as in the water-soluble and water-insoluble subfractions. Some information is also provided on the thoracic and respirable aerosol fractions. Further, results are presented for volatile hydrides of arsenic and selenium released in the copper purification steps of the electrorefining process. For the pyrometallurgical operations, a comparison of the geometric means for the inhalable aerosol fraction indicated that water-soluble copper levels were on average 19-fold higher compared to nickel (p < 0.001) and a significant association was evident between them (r = 0.87, p < 0.001); for the insoluble subfraction, the copper : nickel ratio was 12.5 (p < 0.001) and the inter-element correlation had r = 0.98 and p < 0.001. Although for the electrorefinery workers the relative inhalable concentrations of copper and nickel were not significantly different (p > 0.05), the corresponding inter-element associations were: slope of 7.7, r = 0.54, p ≤ 0.001 for the water-soluble subfraction and slope of 1.3, r = 0.71 and p ≤ 0.001 for the water-insoluble subfraction. On average, a good proportion of the inhalable copper and nickel were found in the thoracic (40%) and respirable (20%) aerosol fractions. Cobalt air concentrations were generally low with geometric means and 95% confidence intervals of 3.1 (2.4–4.2) μg m−3 (pyrometallurgical workers) and 0.3 (0.4–0.5) μg m−3 (electrorefinery workers). Similarly, the maximum concentrations of cadmium and lead were low, respectively 4 and 25 μg m−3. Of the hydrides, tellurium and antimony could not be detected, but for the arsenic (arsine) and selenium hydrides measurable exposure occurred for almost all electrorefinery workers, although the levels were generally low at 0.2 μg m−3.

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Publication details

The article was received on 03 Jun 2004, accepted on 06 Sep 2004 and first published on 28 Oct 2004


Article type: Paper
DOI: 10.1039/B408464K
Citation: J. Environ. Monit., 2004,6, 985-991
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    Multi-component assessment of worker exposures in a copper refinery

    Y. Thomassen, E. Nieboer, N. Romanova, A. Nikanov, S. Hetland, E. P. VanSpronsen, J. Ø. Odland and V. Chashchin, J. Environ. Monit., 2004, 6, 985
    DOI: 10.1039/B408464K

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