首页> 外文会议>TMS(The Minerals, Metals amp; Materials Society) Annual Meeting; 20050213-17; San Francisco, CA(US) >STUDIES OF HEAT EXCHANGE WITHIN THE WORKING SPACE OF AN ELECTRIC NICKEL ANODE REFINING FURNACE
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STUDIES OF HEAT EXCHANGE WITHIN THE WORKING SPACE OF AN ELECTRIC NICKEL ANODE REFINING FURNACE

机译:镍阳极精炼炉工作空间内的换热研究

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摘要

The effect of the degree of nickel oxide reduction and the reaction gas composition on the furnace productivity has been estimated by computations and the established relationship is in good agreement with the practical data obtained in the process of electric smelting at the Severonickel smelter. An increase in the reduction degree within a range of η = 0.65 - 0.9 results in an increase in the furnace productivity by 19% to 37% and in a decrease in the unit electric power requirement by 16% to 27% depending on the reaction gas composition. The agreement between the computed and practical data has confirmed that the decisive factor for the process of treatment of reduced nickel oxide in an electric-arc furnace under the given conditions is the specific heat isorption, which is dependent on the nickel oxide reduction degree and the reaction gas composition.
机译:通过计算估计了氧化镍还原度和反应气体组成对炉生产率的影响,所建立的关系与在Severonickel冶炼厂进行电冶炼过程中获得的实际数据高度吻合。还原度在η= 0.65-0.9的范围内增加,取决于反应气体,炉的生产率提高了19%至37%,单位电力需求降低了16%至27%组成。计算数据与实际数据之间的一致性已证实,在给定条件下,电弧炉中还原氧化镍的处理过程的决定性因素是比热吸收,这取决于氧化镍的还原程度和氧化镍的还原度。反应气体组成。

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