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Reducing Net CO_2 Emissions Using Charcoal as a Blast Furnace Tuyere Injectant

机译:使用木炭作为高炉风口喷射剂来减少二氧化碳的净排放量

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The replacement of coal-based fuels by renewable fuels such as charcoal is an attractive way to reduce net greenhouse gas emissions from the integrated steelmaking route. Our previous studies have indicated that the potential for savings in net CO_2 emissions ranges from 32 to 58 percent, with use as a BF tuyere injectant being the largest application. The current study considered the combustibility of four types of charcoal in comparison with PCI coal under simulated BF raceway conditions. The major findings were that burnouts under standard conditions (air-cooled coaxial lance, O/C = 2.0) were comparable or better than that of the high volatile matter PCI coal studied, and a comparison with the trend line for burnout with injectant volatile matter previously established for coals, indicated that the hardwood charcoals studied had burnouts 40% (abs) higher than those of equivalent coals, and the softwood charcoal studied was higher again. A study of the effects of oxygen enrichment indicated that small increases were effective, and particularly so for the least combustible charcoal. Overall, the burnout results indicated that higher-than-coal injection rates should be possible in industrial practice, and in combination with the previous heat and mass balance results, they indicated the potential for increased BF productivity. The brief study of the combustion of coal-charcoal mixtures indicated good combustibility and predictable burnouts. The microscopic examination of both the charcoal injectants and their combustion chars indicated that there was significant fragmentation of the charcoals during combustion, boosting their already high surface areas and combustibility.
机译:用可再生燃料(例如木炭)代替煤基燃料是减少综合炼钢路线所产生的温室气体净排放的一种有吸引力的方法。我们以前的研究表明,将净CO_2排放量节省的潜力在32%到58%之间,其中最大的应用是高炉风口喷射器。当前的研究考虑了在模拟的高炉滚道条件下与PCI煤相比四种木炭的可燃性。主要发现是,在标准条件下(空冷同轴喷枪,O / C = 2.0)的燃尽与研究的高挥发物PCI煤相当或更好,并且与喷射挥发物燃尽趋势线进行了比较。先前针对煤炭而建立的研究表明,所研究的硬木木炭的燃尽比同等煤高40%(abs),而所研究的软木木炭的燃尽又更高。对氧气富集作用的研究表明,少量增加是有效的,特别是对于最不易燃的木炭而言。总的来说,燃尽结果表明在工业实践中应该有可能实现高于煤的注入速率,并且结合先前的热量和质量平衡结果,它们表明了提高高炉生产率的潜力。对煤-炭混合物燃烧的简要研究表明,该混合物具有良好的可燃性和可预测的燃尽。对木炭喷射剂和它们的燃烧炭的显微镜检查表明,木炭在燃烧过程中有明显的碎裂,增加了它们已经很高的表面积和可燃性。

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