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Influence of Water Vapor on the Oxidation Behavior of Molten Aluminum Magnesium Alloys

  • Stefan Tichy,
  • Simon Doppermann,
  • Philip Pucher,
  • Bernd Prillhofer,
  • Stefan Wibner,
  • Helmut Antrekowitsch

摘要

To achieve the goal of climateClimate neutrality in aluminumAluminum casthouses, all furnacesFurnace currently heated with fossil fuels should be able to be switched to hydrogenHydrogen burner technologies in the future. This primarily entails a change in the furnaceFurnace atmosphereAtmosphere. In addition to the elimination of CO2 emissions, increased water vaporWater vapor contents must inevitably be expected when combusting H2. While the oxidation-inhibiting effect of carbon dioxideCarbon dioxide on aluminum-magnesiumMagnesium melts is well known and extensively studied, the effects of water vaporWater vapor on oxidation behavior are still largely unexplored. Depending on the burner setup, H2O contents can range from 17 vol.% (CH4 + Air) to theoretically over 95 vol.% (H2 + O2). In this work, an isolated examination of the influence of H2O on the oxidation behavior of molten AlMg alloysAlloys takes place. In addition to gravimetric analyses, an optical investigation of the resulting oxide layers is also carried out. It can be shown that high H2O contents in the furnaceFurnace atmosphereAtmosphere have a similar oxidation-inhibiting effect compared to CO2.