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Mass Balance Modeling for Electric Arc Furnace and Ladle Furnace System in Steelmaking Facility in Turkey

机译:土耳其炼钢厂电弧炉和钢包炉系统的质量平衡模型

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In the electric arc furnace (EAF) steel production processes, scrap steel is principally used as a raw material instead of iron ore. In the steelmaking process with EAF, scrap is first melted in the furnace and then the desired chemical composition of the steel can be obtained in a special furnace such as ladle furnace (LF). This kind of furnace process is used for the secondary refining of alloy steel. LF furnace offers strong heating fluxes and enables precise temperature control, thereby allowing for the addition of desired amounts of various alloying elements. It also provides outstanding desulfurization at high-temperature treatment by reducing molten steel fluxes and removing deoxidation products. Elemental analysis with mass balance modeling is important to know the precise amount of required alloys for the LF input with respect to scrap composition. In present study, chemical reactions with mass conservation law in EAF and LF were modeled altogether as a whole system and chemical compositions of the final steel alloy output can be obtained precisely according to different scrap compositions, alloying elements ratios, and other input amounts. Besides, it was found that the mass efficiency for iron element in the system is 95.93%. These efficiencies are calculated for all input elements as 8.45% for C, 30.31% for Si, 46.36% for Mn, 30.64% for P, 41.96% for S, and 69.79% for Cr, etc. These efficiencies provide valuable ideas about the amount of the input materials that are vanished or combusted for 100 kg of each of the input materials in the EAF and LF system.
机译:在电弧炉(EAF)钢的生产过程中,废铁主要用作原料,而不是铁矿石。在采用电弧炉的炼钢过程中,首先将废料在炉中熔化,然后可以在特殊的炉子(例如钢包炉(LF))中获得所需的化学成分。这种炉法用于合金钢的二次精炼。 LF炉提供强大的加热通量,并能够进行精确的温度控制,从而允许添加所需量的各种合金元素。它还通过减少钢水熔剂和去除脱氧产物,在高温处理中提供出色的脱硫效果。使用质量平衡模型进行元素分析对于了解LF废料成分所需的LF输入所需合金的精确数量非常重要。在本研究中,对EAF和LF中具有质量守恒定律的化学反应进行了整体建模,并且可以根据不同的废料成分,合金元素比例和其他投入量精确获得最终钢合金产量的化学成分。此外,发现系统中铁元素的质量效率为95.93%。计算得出的所有输入元素的效率分别为C的8.45%,Si的30.31%,Mn的46.36%,P的30.64%,S的41.96%和Cr的69.79%,等等。这些效率提供了有关数量的有价值的想法对于EAF和LF系统中每种输入物料100千克消失或燃烧的输入物料。

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