HR: 0830h
AN: B21D-0744 [PDF]
TI: Soil Phosphorus Supply Under Different Soil Redox Conditions: Implications of Mineral Dissolution and
Soil Organic Matter Turnover
AU: * Chacon, N
EM: nchacon@nature.berkeley.edu
AF: Noemi Chacon, 151 Hilgard Hall, Ecosystem Science Division, Environmental Science, Policy & Management,
University of California, Berkeley, Ca 94720-3110 United States
AB:
In humid tropical environments, phosphorus (P) limitation to net primary productivity (NPP) has been associated with the
formation of secondary phosphate minerals with aluminum (Al) and iron (Fe) oxides. Under low oxygen (O$_{2}$) availability,
iron-reducing bacteria use Fe oxides and oxyhydroxides as the terminal electron acceptors for anaerobic respiration and
phosphate ions that are associated with the mineral surfaces are released when the surface is reduced. Surface soils of humid
tropical forests are often characterized by low and fluctuating O$_{2}$ availability. In this study we examined the effect
of soil O$_{2}$ depletion on Fe-P relationships in humid tropical forest soils from Puerto Rico. Surface mineral soils (0-10
cm depth) were incubated under oxic (ambient air), suboxic (94% N$_{2}$- 6% O$_{2}$) and anoxic (100% N$_{2}$) conditions
for 39 days and analyzed periodically for P fractions and CO$_{2}$ efflux. The moderately labile inorganic P fraction
(NaOH-Pi ) was the most sensitive to changes in soil redox conditions showing a rapid increase over the first 2 days of
incubation. Under suboxic and oxic conditions, NAOH-Pi increased after 25 days of incubation, and was correlated with soil
CO$_{2}$ efflux suggesting that mineralization of organic matter led to increased labile P in these samples. Under anoxic
conditions HCl-Pi was correlated with the most labile P pool (water available Pi) suggesting that soil reduction causes a
rapid pulse of P from the geochemical pool. This short term release of P is likely to be important in maintaining the high
NPP characteristic of humid tropical forests.
DE: 0400 Biogeosciences
DE: 1615 Biogeochemical processes (4805)
SC: Biogeosciences [B]
MN: 2003 Fall Meeting