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1.
Environ Int ; 60: 56-70, 2013 Oct.
Article in English | MEDLINE | ID: mdl-24013020

ABSTRACT

Internationally publicized impacts upon human health associated with potentially harmful element (PHE) exposure have been reported amongst internally displaced populations (IDPs) in Mitrovica, Kosovo, following the Kosovan War. Particular concern has surrounded the exposure to Pb indicated by the presence of highly elevated concentrations of Pb in blood and hair samples. This study utilizes a physiologically-based in-vitro extraction method to assess the bioaccessibility of PHEs in surface soils and metallurgical waste in Mitrovica and assesses the potential daily intake of soil-bound PHEs. Maximum As (210mgkg(-1)), Cd (38mgkg(-1)), Cu (410mgkg(-1)), Pb (18790mgkg(-1)) and Zn (8500mgkg(-1)) concentrations in surface soils (0-10cm) are elevated above guideline values. Samples with high PHE concentrations (e.g. As >1000mgkg(-1); Pb >1500mgkg(-1)) exhibit a wide range of bioaccessibilities (5.40 - 92.20% in the gastric (G) phase and 10.00 - 55.80% in the gastric-intestinal (G-I) phase). Samples associated with lower bioaccessibilities typically contain a number of XRD-identifiable primary and secondary mineral phases, particularly As- and Pb-bearing arsenian pyrite, beudantite, galena and cerrusite. Quantification of the potential human exposure risk associated with the ingestion of soil-associated PHEs indicates that on average, 0.01µg Cd kg(-1) BW d(-1), 0.16µg Cu kg(-1) BW d(--1), 0.12µg As kg(-1) BW d(-1), 7.81µg Pb kg(-1) BW d(-1), and 2.68µg Zn kg(-1) BW d(-1) could be bioaccessible following ingestion of PHE-rich soils in the Mitrovica region, with Pb, and to a lesser extent As, indicating the likely possibility of local populations exceeding the recommended tolerable daily intake. Lead present within surface soils of the area could indeed have contributed to the human Pb burden due to the high bioaccessibility of Pb present within these soils (13.40 - 92.20% in the gastric phase). Data for Pb levels in scalp hair (≤120µgg(-1)) and blood (≥650µgdL(-1); WHO, 2004) for children that have lived within IDP camps in Mitrovica indicate significant Pb uptake has indeed taken place. The highly bioaccessible nature of soil-associated PHEs in this study highlights the need for appropriate environmental management approaches that limit the exposure of local populations to these contaminated soils.


Subject(s)
Environmental Monitoring/methods , Hair/chemistry , Lead/analysis , Metallurgy , Soil Pollutants/analysis , Soil/chemistry , Waste Products/analysis , Biological Availability , Child , Environmental Pollution/analysis , Humans , Intestinal Secretions/chemistry , Kosovo , Lead/pharmacokinetics , Metals/analysis , Metals/pharmacokinetics , Minerals/analysis , Minerals/pharmacokinetics , Saliva/chemistry , Soil Pollutants/pharmacokinetics
2.
Environ Geochem Health ; 33(2): 167-81, 2011 Apr.
Article in English | MEDLINE | ID: mdl-20585835

ABSTRACT

The metal content was determined in soils from a former, historic, contaminated land site and now a 'green' public open space in N.E. England. Using a systematic sampling grid approach, 32 soil samples were taken from locations across the site and analyzed for six potentially toxic elements (Cd, Cr, Cu, Ni, Pb, and Zn). Initially, the pseudo-total metal content of the soils was determined using acid digestion followed by inductively coupled plasma mass spectrometry analysis. This data was evaluated against published soil guideline value (SGV) and generic assessment criteria (GAC) values; it was found that 21% (i.e., 41 samples) exceeded the stated lower values. The data was then compared to the oral bioaccessibility of the soils, which was assessed by an in-vitro gastrointestinal extraction procedure. The results, determined as the % BAF, indicated that overall bioaccessibility was low (<10% BAF) for all the elements studied; the exception was Cd. Given that SGV/GAC values are based on generic land-use categories and not a public open space, as investigated in this work, further work is recommended on developing a qualitative risk assessment at the site to estimate the risks posed to human health via the direct and indirect soil ingestion pathway.


Subject(s)
Environmental Exposure/analysis , Metals/analysis , Soil Pollutants/analysis , Soil/analysis , Biological Availability , Cities , Digestive System/metabolism , Eating , England , Humans , Metals/pharmacokinetics , Risk Assessment/methods , Soil Pollutants/pharmacokinetics , Soil Pollutants/toxicity
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