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Human Health Risk Assessment of Metal-contaminated Soils in Sydney Estuary Catchment (Australia)

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Date 2024 Mar 14
PMID 38483680
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Abstract

Sydney estuary catchment supports the largest city in Australia and provides essential eco-social and environmental services; however, the region has been influenced by extensive anthropogenic modification. Soil metal concentrations in the catchment had been studied previously; however, the current investigation was designed to determine the risk posed by these contaminants to human health. Soil metal concentrations were higher than observed in most global capitals and increased substantially in the south and south-east of the catchment and close to the central business district. Road-side soils and road dust contained the highest concentration of metals in the catchment. Lead in catchment soils was closely related to traffic density and sourced from the historic use of Pb in petrol. A human health assessment indicated that soil Cd, Ni and Zn posed no non-carcinogenic risk (NCR), or carcinogenic risk (CR) for children, or adults in Sydney estuary catchment and that Cu and Cr may pose minor NCR for children. Vehicle-related Pb raised the greatest human health risk in catchment soils and may pose NCR at 32% and 4.3% of sites for children and adults, respectively. Inconsistent analytical techniques used in CR and NCR evaluations produce incomparable assessments and a consistent` methodology is suggested to improve interpretation. Human health risk may well be higher than commonly calculated due to pollutants present in urban soil not being included in assessments.

References
1.
Mihankhah T, Saeedi M, Karbassi A . A comparative study of elemental pollution and health risk assessment in urban dust of different land-uses in Tehran's urban area. Chemosphere. 2019; 241:124984. DOI: 10.1016/j.chemosphere.2019.124984. View

2.
Liu E, Yan T, Birch G, Zhu Y . Pollution and health risk of potentially toxic metals in urban road dust in Nanjing, a mega-city of China. Sci Total Environ. 2014; 476-477:522-31. DOI: 10.1016/j.scitotenv.2014.01.055. View

3.
Guha Mazumder D . Chronic arsenic toxicity & human health. Indian J Med Res. 2008; 128(4):436-47. View

4.
Rouillon M, Harvey P, Kristensen L, George S, Taylor M . VegeSafe: A community science program measuring soil-metal contamination, evaluating risk and providing advice for safe gardening. Environ Pollut. 2016; 222:557-566. DOI: 10.1016/j.envpol.2016.11.024. View

5.
Clark M, McConchie D, Birch G . Selective chemical extraction and grainsize normalisation for environmental assessment of anoxic sediments: validation of an integrated procedure. Sci Total Environ. 2000; 258(3):149-70. DOI: 10.1016/s0048-9697(00)00532-5. View