An anoxic event and other biogeochemical effects of the Pantanal wetland on the Paraguay River

Бескислородное событие и другие биогеохимические эффекты водно-болотных угодий Пантанала на реку Парагвай
John M. Mélack, Stephen K. Hamilton, Suzanne J. Sippel, DÓbora F. Calheiros
1997-03-01

Pantanal wetlandParaguay Riveranoxic eventdissolved oxygen depletionmethane oxidation
The Paraguay River was sampled throughout the annual cycle at two sites located downriver from most of the Pantanal, and major tributaries were occasionally sampled close to their entry into the Pantanal. The floodplains strongly modulate the discharge regime and substantially reduce runoff by enhancing evapotranspirative losses. Contact of the river water with the floodplain results in depletion of dissolved O2, oversaturation of CO2 and CH4 loss of suspended sediments, and reduced export of N and P. Oxygen depletion and associated chemical changes are most marked when river water first contacts the floodplain; in 1995, the water remained anoxic throughout the river channel for 6 weeks, causing massive fish mortality. Bottle incubations showed that the rate of O2 consumption by the river water during the anoxic event was high at first (7.2 µM h−1) but declined exponentially over several hours and was not stimulated by organic carbon and nutrient additions. The O2 demand may be due largely to bacterial CH4 oxidation; the concentration of CH4 in the river was particularly high (∼31 µM) at the time of the incubations. The O2 depletion corresponded with higher concentrations of most major ions, Si, and dissolved organic carbon but was not accompanied by elevated concentrations of inorganic N and P, H2S, or most of the 46 dissolved trace elements that were measured. In contrast to O2 depletion and associated chemical changes, sediment retention by the floodplains was greatest at maximum river stages. Most chemical weathering of minerals seems to take place in the upland drainage basins rather than on the floodplains, and most major solutes display conservative mixing in the river‐floodplain system.
1
During a 1995 anoxic event, the river channel remained oxygen-free for six weeks, causing massive fish mortality.
2
Floodplain contact depletes dissolved oxygen, increases CO₂ supersaturation and methane loss, retains suspended sediments, and reduces nitrogen and phosphorus export.
3
High methane concentrations (~31 µM) suggest bacterial methane oxidation contributed substantially to oxygen demand, while depletion was not accompanied by increased inorganic nitrogen, phosphorus, hydrogen sulfide, or most measured trace elements.
4
Pantanal floodplains substantially regulate Paraguay River discharge by enhancing evapotranspiration and reducing runoff.
5
River-water oxygen consumption initially reached 7.2 µM h⁻¹, declined exponentially, and was not stimulated by added organic carbon or nutrients.

The Paraguay River–Pantanal floodplain system

Floodplain-driven biogeochemical transformations, especially oxygen depletion and associated carbon, nutrient, sediment, and solute dynamics

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1997-03-01
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John M. Mélack
Stephen K. Hamilton
Suzanne J. Sippel
DÓbora F. Calheiros
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