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首页> 外文期刊>ISIJ international >Optimal Resource Allocation in Integrated Steelmaking with Biomass as Auxiliary Reductant in the Blast Furnace
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Optimal Resource Allocation in Integrated Steelmaking with Biomass as Auxiliary Reductant in the Blast Furnace

机译:高炉中生物质作为辅助还原剂的炼钢综合资源的优化配置

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An integrated steel plant with two blast furnaces with the option to use biomass to partially substitute fossil reductants was simulated. A thermodynamic blast furnace model was used, combined with simpler models of the other unit processes (sintermaking, cokemaking, basic oxygen furnace, hot stoves and power plant) and a nonlinear model of the biomass conversion with respect to the processing temperature. Given an aim steel production rate for the plant, the economics of the plant was optimized by minimizing the specific costs of liquid steel, considering costs of raw materials, energy and CO_(2) emissions. Limited supply of sinter and coke was optimally allocated to the two blast furnaces and the effects of restrictions in the biomass, oxygen and oil supply on the operating states were studied. An analysis was also undertaken to study how the production rate of the plant would affect the optimal state. The results demonstrate that a non-uniform distribution of the resources can be economically justified, in particular for cases where the blast furnaces operate under different constraints.
机译:模拟了一个具有两个高炉的综合钢铁厂,可以选择使用生物质部分替代化石还原剂。使用了一个热力学高炉模型,并结合了其他单元过程的简单模型(烧结炉,炼焦炉,碱性氧气炉,热风炉和发电厂)以及生物质转化相对于加工温度的非线性模型。给定工厂的目标钢生产率,考虑原材料成本,能源和CO_(2)排放,通过将液态钢的特定成本降至最低来优化工厂的经济性。将烧结矿和焦炭的有限供应最佳地分配给了两个高炉,并研究了生物质,氧气和石油供应的限制对运行状态的影响。还进行了分析,以研究植物的生产率如何影响最佳状态。结果表明,资源的不均匀分配在经济上是合理的,特别是对于高炉在不同约束条件下运行的情况。

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