Publication Details |
Category | Text Publication |
Reference Category | Journals |
DOI | 10.1002/etc.5620210903 |
Document | Shareable Link |
Title (Primary) | Trace metal distribution in soluble organic matter from municipal solid waste compost determined by size-exclusion chromatography |
Author | Kaschl, A.; Römheld, V.; Chen, Y. |
Source Titel | Environmental Toxicology and Chemistry |
Year | 2002 |
Department | GWS; PB IBFL |
Volume | 21 |
Issue | 9 |
Page From | 1775 |
Page To | 1782 |
Language | englisch |
Abstract | Municipal solid waste (MSW) composts carry high amounts of trace metals and organic complexing agents that may influence metal bioavailability and mobility after application to soils. In order to assess the degree of organic complexation of trace metals in the solution phase of MSW compost and the relevance of organic ligand type, size exclusion chromatography (SEC) was applied to compost-extracted organic ligands. Adjustment of the elution conditions minimized the interaction with the gel matrix for compost humic substances and dissolved organic matter (DOM) fractions. The SEC was then used to separate the aqueous compost extract into samples with distinct differences in chemical constituents. The highest quantities of Cu, Zn, Ni, Mn, and Cd were found to coelute with the main peak of the SEC elution curve, which, as observed by Fourier-transformed infrared (FTIR) spectroscopy, also had the highest density of carboxyl groups. The ratio of aromatic to aliphatic structures was higher for eluates with low retention times, and cations such as Al, Cr, and Fe were preferably associated with these larger organic molecules. All trace metals in the compost solution phase were bound mostly to DOM rather than forming inorganic complexes. |
Persistent UFZ Identifier | https://www.ufz.de/index.php?en=20939&ufzPublicationIdentifier=5649 |
Kaschl, A., Römheld, V., Chen, Y. (2002): Trace metal distribution in soluble organic matter from municipal solid waste compost determined by size-exclusion chromatography Environ. Toxicol. Chem. 21 (9), 1775 - 1782 10.1002/etc.5620210903 |