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Experimental Study on Deep Desulfurizer in LF Process

机译:LF法深度脱硫装置的试验研究

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CaO-Al2O3-SiO2-CaF2-MgO was selected as the slag system for desulfurization in LF process.The reaction between steel and slag during desulfurization has been simulated by using Factsage software to study the influence of component on the sulfur distribution ratio.In order to research the influence of CaO content,aluminum powder content and its granularity on desulfurization,laboratory experiments have been carried out in a 200 kg inductive furnace.Results showed that the optimal composition of deep desulfurizer is wCaO=64% and aluminium powder 10% with a granularity of 30 μm.Industrial trials showed that the main composition range of final slag in LF process is wCaO=53.0%-57.0%,wAl2O3=23.4%-25.1%,wSiO2=8.1%-10.0%,and wCaF2=3.2%-4.7%.The sulfur mass percent in steel is lower than 0.0008% with a desulfurization rate above 89%.According to the result of industrial production,this desulfurizer could meet the production requirement for ultra-low sulfur steel,of which sulfur mass percent is under 0.0015%
机译:选择CaO-Al2O3-SiO2-Caf2-MgO作为LF过程中脱硫的渣系统。通过使用Factsage软件研究了脱硫期间脱硫期间的反应,研究了组分对硫分配比的影响。为了研究CaO含量,铝粉含量及其粒度对脱硫的影响,在200kg电感炉中进行了实验室实验。结果表明,深脱硫剂的最佳组成是WcaO = 64%和铝粉10%粒度为30μm。工业试验表明,LF工艺中最终渣的主要成分范围是WcaO = 53.0%-57.0%,WAL2O3 = 23.4%-25.1%,WSIO2 = 8.1%-10.0%,WCAF2 = 3.2% -4.7%。钢中的硫质量%低于0.0008%,脱硫率高出89%。根据工业生产的结果,该脱硫剂可以满足超低硫钢的生产要求,其中硫质量硫是 低于0.0015%

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