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首页> 外文期刊>ISIJ international >Effect of Large Amount of Co-injected Gaseous Reducing Agent on Combustibility of Pulverized Coal Analyzed with Non-Contact Measurement
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Effect of Large Amount of Co-injected Gaseous Reducing Agent on Combustibility of Pulverized Coal Analyzed with Non-Contact Measurement

机译:大量共注射气体还原剂对非接触式测量分析粉煤煤的燃烧的影响

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摘要

Nowadays, reduction of amounts of CO_(2) from ironmaking process is important from the aspect of prevention of the global warming. COURSE50 is Japanese national project which aims to reduce the amount of CO_(2) emission from ironmaking process by 30% by 2050. In COURSE50, we try to reduce iron oxide with H_(2) to decrease amounts of carbon use, by injecting large amount of gas containing H_(2) and pulverized coal (PC) from tuyere. In that case, PC combustibility can be different from that in general blast furnace condition, due to high co-injected reducing gas ratio. Though a large number of researches about PC combustion around tuyere of blast furnace has been carried out, the effect of large amounts of co-injected reducing gas on PC combustibility was hardly investigated. To evaluate that, we conducted experiments with two experimental furnaces equipped with various non-contact measurement apparatus and found that;1) The larger amounts of co-injected reducing gas were, the faster O_(2) and CO_(2) consumption, and CO and H_(2) generation in the raceway.2) The amounts of co-injected reducing gas should be optimized for higher PC combustibility.3) Co-injected reducing gas activated PC combustion by raising PC temperature, and that resulted in acceleration of PC.4) Trade-off relationship between rapid heating effect and O_(2) consumption of co-injected reducing gas could determine the optimum amounts of reducing gas.Consequently, we elucidated how we could co-inject reducing gas with PC as reducing agents without deteriorating PC combustibility.
机译:如今,从铁制造过程中减少了炼铁过程的数量,从预防全球变暖方面是重要的。当地50是日本国家项目,旨在将炼铁过程中的CO_(2)排放量减少30%到2050年。在进行50时,我们尝试用H_(2)减少氧化铁,通过注入大量来减少碳使用量。含有H_(2)和粉煤(PC)的气体的量。在这种情况下,由于高共注入的降低气体比,PC可燃性可以与一般的高炉状况不同。虽然已经进行了关于对高炉风口周围的PC燃烧的大量研究,但很难研究大量共注入的降低气体对PC可燃性的影响。为了评估,我们用配备有各种非接触式测量装置的两个实验炉进行了实验,发现; 1)较大量的共注射的还原气体,较快的O_(2)和CO_(2)消耗,以及滚道中的CO和H_(2)生成.2)应通过提高PC温度来优化共注射的还原气体的量,以获得更高的PC可燃性。通过提高PC温度,并导致加速的加速降低气体活性PC燃烧PC.4)快速加热效果与O_(2)o_(2)o_(2)消耗的折叠关系可以确定还原气体的最佳量。阐明,我们阐明了我们如何用PC共注出的气体作为还原剂。没有降低PC可燃性。

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