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Improvement in Blast Furnace Reaction Efficiency through the Use of Highly Reactive Coke

机译:通过使用高反应性焦炭改进高炉反应效率

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A method to produce coke with high strength and reactivity through the addition of a catalyst was investigated in order to improve blast furnace reaction efficiency. The addition of Ca compounds was found to considerably increase the reactivity of the coke at a low temperature range in the thermal reserve zone of a blast furnace. Furthermore it was proved that strong, highly reactive 'lump' form coke could be produced by adding a Ca-rich non-caking coal and adjusting the coal blend composition. Based on this fundamental study, the Ca-rich coke was successfully produced in coke ovens on a commercial scale. The use of the Ca-rich coke in a commercial scale blast furnace was found to cause a decrease in the reducing agent rate by 10 kg/t-p. This technology, producing coke of high reactivity and strength through catalyst addition, is promising as a means of improving the reaction efficiency of a blast furnace.
机译:研究了通过加入催化剂的高强度和反应性产生焦炭的方法,以提高高炉反应效率。发现添加Ca化合物可显着提高高温储备区的低温范围内焦炭的反应性。此外,证明了强大的高度反应性的“块状”焦炭可以通过加入富含Ca的非粘合煤和调节煤混合物组合物来生产。基于这一基础研究,在商业规模的焦炉中成功生产了CA富含焦炭。发现在商业尺度高炉中使用具有CA富含焦炭的可焦炭导致降低剂量降低10kg / t-p。通过催化剂加入产生高反应性和强度的技术,具有提高高炉反应效率的手段。

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