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The effect of two endogeic earthworm species on zinc distribution and availability in artificial soil columns

Authors :
Zorn, Mathilde I.
Van Gestel, Cornelis A.M.
Eijsackers, Herman
Source :
Soil Biology & Biochemistry. May2005, Vol. 37 Issue 5, p917-925. 9p.
Publication Year :
2005

Abstract

Abstract: The objective of this study was to determine the impact of earthworm bioturbation on the distribution and availability of zinc in the soil profile. Experiments were carried out with Allolobophora chlorotica and Aporrectodea caliginosa in 24 perspex columns (∅ 10cm), filled with 20–23cm non-polluted soil (OM 2%, clay 2.9%, pH 0.01M CaCl2 6.4), that was covered by a 3–5cm layer of aged zinc spiked soil (500mg Zn/kg dry soil) and another 2cm non-polluted soil on top. After 80 and 175 days, columns were sacrificed and each cm from the top down to a depth of 15cm was sampled. Earthworm casts, placed on top of the soil, were collected. Each sample was analyzed for total and CaCl2-exchangeable zinc concentrations. Effects of earthworm bioturbation were most pronounced after 175 days. For A. chlorotica, total and CaCl2-exchangeable zinc concentrations in the polluted layers were lower with than without earthworms. Total zinc concentrations in the non-polluted layers were higher in columns with earthworms. Casts of A. chlorotica collected on the soil surface showed slightly higher total zinc concentrations than non-polluted soil. Casts were found throughout the whole column. For A. caliginosa there were no differences in total zinc concentration between columns with and without earthworms. CaCl2-exchangeable zinc concentrations in the polluted layers were lower for columns with earthworms. Casts were mainly placed on top of the soil and contained total zinc concentrations intermediate between those in non-polluted and polluted soil layers. This study shows that different endogeic earthworm species have different effects on zinc distribution and availability in soils. A. chlorotica transfers soil throughout the whole column, effectively mixing it, while A. caliginosa decreases metal availability and transfers polluted soil to the soil surface. [Copyright &y& Elsevier]

Details

Language :
English
ISSN :
00380717
Volume :
37
Issue :
5
Database :
Academic Search Index
Journal :
Soil Biology & Biochemistry
Publication Type :
Academic Journal
Accession number :
17437116
Full Text :
https://doi.org/10.1016/j.soilbio.2004.10.012