Measuring Bioavailability: From a Scientific Approach to Standard Methods
- 1 September 2007
- journal article
- special submission
- Published by Wiley in Journal of Environmental Quality
- Vol. 36 (5) , 1420-1428
- https://doi.org/10.2134/jeq2006.0492
Abstract
Biological effects are not related to the total concentration of a contaminant in the soil and soil‐like materials. Organisms respond only to the fraction that is biologically available. The bioavailable fractions of contaminants are dependent on soil properties and various processes varying with time and on the behavior or the target organism. Bioavailability may be assessed in two complementary ways: (i) by chemical methods (e.g., extraction methods), which determine a defined available fraction of a well defined class of contaminants; and (ii) by biological methods, which expose organisms to soil or soil eluates to monitor effects. Although there is scientific discussion on the concept of bioavailability, the literature gives enough evidence to recognize bioavailability as a promising tool in risk assessment. A large number of methods are available. Under regulatory aspects of soil protection, a risk assessment should be based on the same common concept of determination and assessment of exposure and measuring and assessment of effects. A harmonized framework on bioavailability is necessary to promote the development and introduction of workable (international) standard methods to be used in soil and site assessment. The working group ‘Bioavailability’ of ISO/TC190‐Soil Quality has developed a guidance document for development and selection of methods to assess bioavailability for different target species with regard to several classes of contaminants. The way to this standard, on the boarder of science and regulation, is described in this article.Keywords
This publication has 14 references indexed in Scilit:
- Two complementary sides of bioavailability: Accessibility and chemical activity of organic contaminants in sediments and soilsEnvironmental Toxicology and Chemistry, 2006
- Freely Dissolved Concentrations of PAHs in Soil Pore Water: Measurements via Solid-Phase Extraction and Consequences for Soil TestsEnvironmental Science & Technology, 2006
- Kinetic Aspects of Donnan Membrane Technique for Measuring Free Trace Cation ConcentrationAnalytical Chemistry, 2005
- Peer Reviewed: Defining Bioavailability and Bioaccessibility of Contaminated Soil and Sediment is ComplicatedPublished by American Chemical Society (ACS) ,2004
- Bioavailability of Organic Contaminants in SoilsPublished by Springer Nature ,2000
- A Conceptual Framework for Implementation of Bioavailability of Metals for Environmental Management PurposesEcotoxicology and Environmental Safety, 1997
- On heavy metals in soil; rationalization of extractions by dilute salt solutions, comparison of the extracted concentrations with uptake by ryegrass and lettuce, and the possible influence of pyrophosphate on plant uptakeScience of The Total Environment, 1996
- State of the art and future developments in soil analysis for bioavailability assessmentScience of The Total Environment, 1996
- In situ speciation measurements of trace components in natural waters using thin-film gelsNature, 1994
- The nickel uptake from different soils and its prediction by chemical extractionsWater, Air, & Soil Pollution, 1991