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Operation Windows of the Oxygen Blast Furnace with Top Gas Recycling

机译:高炉煤气再循环氧气高炉的操作窗口

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Due to global concern about climate change, efforts in the steel industry to decrease emissions must be introduced, as this industrial sector gives rise to 5–7% of the anthropogenic CO_(2) emissions. There are several possibilities to achieve this goal: Making the processes more energy efficient, changing to renewable energy sources, by introducing process modifications or completely new processes, etc. In this paper the concept of oxygen blast furnace, where pure oxygen is used as blast combined with recycling of CO_(2)-stripped top gas, is studied numerically. In the analysis, special attention is paid to the amount of recycled top gas and how the gas should be divided between injection to the lower (hearth) and upper (shaft) tuyeres. The results shed light on the feasible operation window, under the given process constraints, for the oxygen blast furnace and also how different combinations of hearth and shaft gas injections are reflected in coke rate, oxygen rate and top gas composition, as well as in the emissions. The issue whether the recycled top gas must be heated in regenerative heat exchanges is also addressed by considering the alternative where the recycled gas to the lower tuyeres is injected cold, while the shaft gas is elevated to the reserve zone temperature by partial combustion. The findings of the study are expected to be useful for assessing the feasibility of operating the blast furnace under high top gas recycling rates.
机译:由于全球对气候变化的关注,钢铁行业必须减少排放量,因为该工业部门产生的人为CO_(2)排放量占5–7%。实现此目标有多种可能性:通过引入工艺修改或全新工艺等方法,使工艺更加节能,转换为可再生能源。本文对氧气高炉的概念进行了数值研究,在此概念中,纯氧气用作鼓风并结合了CO_(2)汽提塔顶气的再循环。在分析中,应特别注意回收的顶部气体的量,以及应如何在注入下部(炉膛)和上部(竖井)风口之间分配气体。在给定的工艺约束条件下,结果为氧气高炉提供了可行的操作窗口,以及在焦炭率,氧气率和炉顶气体组成以及炉膛中如何反映炉膛和竖井气体注入的不同组合。排放。还考虑了是否必须在再生式热交换中加热再循环炉顶气这一问题,即考虑将向下部风口的再循环气冷注入,而将竖炉气通过部分燃烧升高到储备区温度的替代方法。预期该研究的结果将有助于评估在高炉顶煤气再循环率下操作高炉的可行性。

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