Modification of an existing in vitro method to predict relative bioavailable arsenic in soils

Author:

Whitacre ShaneORCID,Basta Nicholas,Stevens BrookeORCID,Hanley Valerie,Anderson Richard,Scheckel Kirk

Funder

SERDP

Strategic Environmental Research and Development Program

EPA Brownfields Training Research and Technical Assistance Grant

Publisher

Elsevier BV

Subject

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

Reference49 articles.

1. Development of Chemical Methods to Assess the Bioavailability of Arsenic in Contaminated Media. U.S. Environmental Protection Agency National Center for Environmental Research. EPA Grant Number R825410. Final Report;Basta,2001

2. The effect of dosing vehicle on arsenic bioaccessibility in smelter-contaminated soils;Basta;J. Environ. Sci. Heal A,2007

3. Using in vivo bioavailability and/or in vitro gastrointestinal bioaccessibility testing to adjust human exposure to arsenic from soil ingestion;Basta;Rev. Mineral. Geochem.,2014

4. Mechanisms and Permanence of Sequestered Pb and As in Soils: Impact on Human Bioavailability. SERDP Project ER-1742, Strategic Environmental Research and Development Program, Alexandria, VA. Final Report;Basta,2016

5. Relative bioavailability and bioaccessibility and speciation of arsenic in contaminated soils;Bradham;Environ. Health Perspec.,2011

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