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氧氣高爐的發展歷程及其在北京科技大學的研究進展

Development of an oxygen blast furnace and its research progress in University of Science and Technology Beijing

  • 摘要: 首先介紹了氧氣高爐的發展歷程,早期的研究工作主要著眼于解決由于氧氣代替空氣鼓風而引起的“上冷下熱”問題,并總結了各國研究者提出的氧氣高爐流程及其主要特點。隨后系統闡述了北京科技大學科研人員在氧氣高爐工藝基礎研究與工程技術開發方面所取得的主要進展。這些研究包括氧氣高爐流程設計,含鐵爐料還原與軟熔,氧氣鼓風及循環煤氣噴吹條件下的煤粉燃燒,循環煤氣加熱過程中的物理化學變化等爐內反應與變化,以及在此基礎上開展的回旋區及全爐數值模擬研究,為氧氣高爐的工程化實施奠定理論基礎。最后對氧氣高爐的碳素流及節碳潛力進行了分析,并提出富氫碳氫循環氧氣高爐將成為煉鐵低碳化的重要發展方向。

     

    Abstract: An oxygen blast furnace (OBF) has the advantages of high productivity, high coal injection, low fuel ratio, high gas calorific value, and low carbon emissions; the OBF process is one of the most likely low-carbon ironmaking processes to achieve large-scale application. This paper first introduced the development history of an OBF. The early research work mainly focused on solving the problem of “upper cooling and lower overheating” caused by oxygen instead of air blasting and summarized the OBF process and its main characteristics proposed by researchers in various countries. Then, the progress made by the researchers of the University of Science and Technology Beijing in the research and development of the OBF process was systematically summarized. The studies include the process design of an OBF, the reduction and soft melting of iron-bearing furnace charge, pulverized coal combustion under the conditions of oxygen blast and circulating gas injection, the physical and chemical behavior of recirculating gas during the heating process, as well as the numerical simulation of the raceway and the whole furnace, which gives a theoretical foundation for the engineering implementation of the OBF. Finally, the carbon flow and carbon saving potential of the OBF were analyzed. It is proposed that a hydrogen rich carbon circulating oxygen blast furnace will be an important development in the direction of low-carbon ironmaking.

     

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