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How oxygen deficiency in the Baltic Sea proper has spread and worsened: The role of ammonium and hydrogen sulphide
Authors:Carl Rolff  Jakob Walve  Ulf Larsson  Ragnar Elmgren
Affiliation:1.Stockholm University Baltic Sea Centre, Stockholm University, 106 91 Stockholm, Sweden ;2.Department of Ecology, Environment and Plant Sciences, Stockholm University, 106 91 Stockholm, Sweden
Abstract:Even large inflows of oxygen-rich seawater to the Baltic Proper have in recent decades given only short-lived relief from oxygen deficiency below the halocline. We analyse long-term changes in oxygen deficiency, and calculate the “total oxygen debt” ΣOD, the oxygen required to oxidize the hydrogen sulphide (H2S) and ammonium (NH4) that builds up during stagnation periods. Since the early 1990s, oxygen below 65m has gradually decreased during successive stagnation periods, and the ΣOD has increased, with NH4 more important than previously recognised. After the major inflow in 2014, the Baltic Proper ΣOD has reached its highest level so far. The gradual shift of the ΣOD to shallower sub-halocline waters in the western and northern basins has increased the risk of periodic coastal hypoxia and export of hypoxic water to the Bothnian Sea. The potential for inflows large enough to more than eliminate the ΣOD seems limited in the near term.Supplementary InformationThe online version contains supplementary material available at 10.1007/s13280-022-01738-8.
Keywords:Anoxia   Baltic   Deoxygenation   Hypoxia   Inflow   Oxygen status
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