In vitro assessment of arsenic bioaccessibility in contaminated (anthropogenic and geogenic) soils

Author:

Juhasz Albert L.,Smith Euan,Weber John,Rees Matthew,Rofe Allan,Kuchel Tim,Sansom Lloyd,Naidu Ravi

Publisher

Elsevier BV

Subject

General Medicine,General Chemistry,Environmental Chemistry,Environmental Engineering,Pollution,Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health

Reference29 articles.

1. Bioavailability and risk of arsenic exposure by the soil ingestion pathway;Basta,2001

2. Casteel, S.W., Brown, L.D., Dunsmore, M.E., Weis, C.P., Henningsen, G.M., Hoffman, E., Brattin, T., Hammon, T.L., 1997. Relative bioavailability of arsenic in mining wastes. Document Control No. 4500-88-AORH. US Environmental Protection Agency, Region 8, Denver, CO.

3. Ellice, M.C., Dowling, K., Smith, J., Smith, E., Naidu, R., 2001. Abandoned mine tailings with high arsenic concentrations: a case study with implications for regional Victoria. In: Proceedings of Arsenic in the Asia–Pacific Region: Managing Arsenic for our Future, 20–23 November 2001, Adelaide, South Australia. p. 124.

4. Competitive adsorption of arsenate and arsenite on oxides and clay minerals;Goldberg;Soil Sci. Soc. Am.,2002

5. Assessing Oral Bioavailability of Metals in Soil;Kelly,2002

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