HR: 0800h
AN: H21B-1349 [Abstracts]
TI: Distribution of Trace Metals in a Tanzanian Andosol: A Combined Bulk and Leach Study
AU: * Little, M G
EM: mglittle@rice.edu
AF: Rice University, MS-126
6100 Main Street, Houston, TX 77004
United States
AB:
Here is presented data from a sequential extraction scheme based on the Bureau Commun de Reference (BCR) applied to an
andosol from Mt. Meru in northern Tanzania. This is a study into the origins, fractionation, and fate of 'potentially toxic
elements' (PTE) and other trace elements. The elemental composition of four extracts, water soluble (WAT), carbonate and
exchangeable (CARB), reducible oxides (OX), and organic (ORG), and the bulk soil were determined via ICP-MS and corrected for
loss on ignition. We calculated the net elemental mass change using Zr and Hf as immobile elements. This calculated mass
change was compared to the sum of all four leaches. Co, Mg, Ni, Zn, Cd, Tl are the only elements that show a positive
correlation between the calculated net change based on Zr/Hf and the sum of all four leaches. Of these elements, Zn shows its
greatest bulk enrichment at the surface and declines with depth. Conversely, Tl is enriched throughout the soil column, but
increases in concentration in both the bulk and CARB fraction with depth. The other elements, Co, Ni, and Cd, are most
enriched in the 80-120cm depth range where P and Fe are at their highest concentrations. These observations suggest that
additional Co, Mg, Ni, Zn, Cd, and Tl were incorporated into the soil after initial weathering of the bedrock protolith;
however, these elements redistributed themselves non-uniformly throughout the soil column. Sc and the REE's show increases in
the CARB fraction with depth and Sc, Co, and the REE's show a clear increase in the OX fractions with depth. As much as 25%
of the REE's and Co below 120 cm is in the OX leach. Additionally, Sr/Ca ratios in the CARB leach suggest that the source
material for the carbonate soil fraction is the bedrock above 140cm and a different, high Sr/Ca source below 140 cm.
Therefore, it is likely that exogenous material was added throughout the soil column, but from different sources above and
below 120-140 cm depth.
DE: 0461 Metals
DE: 0486 Soils/pedology (1865)
DE: 0790 Weathering (1625, 1886)
SC: Hydrology [H]
MN: Fall Meeting 2005