Multi-objective Optimization of Ironmaking in the Blast Furnace with Top Gas Recycling
スポンサーリンク
概要
- 論文の詳細を見る
Concern about the growing carbon dioxide content in the atmosphere has induced increasing research activities in the search for means to suppress the emissions of CO2 in primary steelmaking. Blast furnace top gas recycling, combined with CO2 stripping, has been proposed as a promising concept. The paper presents a numerical analysis of top gas recycling under massive oxygen enrichment of the blast based on a simulation of the process chain from coal and ore to liquid steel. Because of the conflicting goals of reducing both production costs and emissions, the task is formulated as a multi-objective optimization problem. The optimal states of the system studied were found to vary significantly on the Pareto frontier, which demonstrates that fundamentally different states of operation may be selected to strongly reduce the emissions, still keeping the steelmaking economically feasible. The findings stress the importance of selecting a proper state of operation for achieving a cost-efficient production of steel with reduced environmental impact. The results also show how emissions can be “artificially” reduced by minimizing the arising emissions within the system boundary.
著者
-
Helle Hannu
Thermal and Flow Engineering Laboratory, Åbo Akademi University
-
Helle Mikko
Thermal and Flow Engineering Laboratory, Åbo Akademi University
-
Saxén Henrik
Thermal and Flow Engineering Laboratory, Åbo Akademi University
-
Pettersson Frank
Thermal and Flow Engineering Laboratory, Åbo Akademi University
関連論文
- Optimization of Top Gas Recycling Conditions under High Oxygen Enrichment in the Blast Furnace
- A Simulation Study of Blast Furnace Hearth Drainage Using a Two-phase Flow Model of the Taphole
- Multi-objective Optimization of Ironmaking in the Blast Furnace with Top Gas Recycling
- Assessment of the State of the Blast Furnace High Temperature Region by Tuyere Core Drilling
- Mathematical Optimization of Ironmaking with Biomass as Auxiliary Reductant in the Blast Furnace
- Optimization of Top Gas Recycling Conditions under High Oxygen Enrichment in the Blast Furnace
- Multi-objective Optimization of Ironmaking in the Blast Furnace with Top Gas Recycling
- Model for Economic Optimization of Iron Production in the Blast Furnace
- A Simulation Study of Blast Furnace Hearth Drainage Using a Two-phase Flow Model of the Taphole
- Optimal Resource Allocation in Integrated Steelmaking with Biomass as Auxiliary Reductant in the Blast Furnace