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首页> 外文期刊>International Journal of Greenhouse Gas Control >Design and evaluation of CO2 capture plants for the steelmaking industry by means of amine scrubbing and membrane separation
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Design and evaluation of CO2 capture plants for the steelmaking industry by means of amine scrubbing and membrane separation

机译:通过胺洗涤和膜分离设计和评估炼钢工业的二氧化碳捕获植物

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An option considered for reducing carbon emissions in the iron/steel industry is the use of Top-gas recycle blast furnace (TGR-BF), which captures CO2 from the blast furnace gas (BFG) and recycles the remaining CO and H-2 back to the blast furnace (BF). This study suggests four different designs of CO2 capture processes suitable for the TGR-BF application: Amine scrubbing, membrane separation, and a hybrid between the amine scrubbing and the membrane separation with and without heat recovery. In particular, the hybrid-with-heat-recovery design recovers the combustion heat of the impurities (e.g., CO and H-2) in the captured CO2 stream. The four alternative processes are simulated and evaluated on the basis of multiple criteria including operating cost, capital cost, rate of CO2 avoided, and CO2 avoidance cost with various electricity sources. Furthermore, sensitivity analysis is performed by perturbing the utility prices. Among the four alternatives, the hybrid-with-heat-recovery design is shown to give the best performance with the avoidance cost of $30.4/ton(CO2), outperforming the mature technologies.
机译:用于减少铁/钢铁工业中碳排放的选项是使用顶气回收高炉(TGR-BF),其捕获来自高炉煤气(BFG)的CO2,并回收剩余的CO和H-2背面到高炉(BF)。该研究表明,适用于TGR-BF应用的CO 2捕获过程的四种不同设计:胺擦洗,膜分离和胺洗涤和膜分离与膜分离,与膜分离,并且没有热回收。特别地,杂交 - 带热回收设计恢复捕获的CO2流中杂质(例如,CO和H-2)的燃烧热。在多个标准的基础上模拟和评估了四种替代过程,包括运营成本,资本成本,CO2速率,以及各种电源的二氧化碳避免成本。此外,灵敏度分析是通过扰动公用事业价格进行的。在四种替代方案中,杂交 - 热恢复设计显示出具有30.4 /吨(CO2)的避免成本,优于成熟技术。

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