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Trace Elements Behavior During the Oxidation of Liquid SiMn Alloy

机译:液态SiMn合金氧化过程中的微量元素行为。

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During the tapping and casting of manganese ferroalloys, fumes are generated and released to the working environment. The fumes are mostly composed of metallic oxides generated due to reaction between high temperature molten metal and ambient oxygen in the air. From an environment perspective, it is important to limit these emissions. However, to do so, it is important to understand fuming mechanisms and kinetics as well as fume compositions, i.e. element behavior during the oxidation process of liquid manganese ferroalloys. Silicomanganese alloys are composed of a minimum of 65 wt% Mn and 17 wt% Si, 2 wt% C as well as minor and trace elements. These elements include Fe, Mg, Al and other elements originating from ores and reductants. Trace elements behavior in fume from liquid silicomanganese generated under an impinging air jet in the temperature range of 1450-1700 ℃ has been investigated in this work. The ther-modynamic and kinetic conditions governing the generation mechanisms are discussed.
机译:在锰铁合金的攻丝和铸造过程中,会产生烟气并释放到工作环境中。烟雾主要由金属氧化物组成,这些金属氧化物是由于高温熔融金属与空气中的氧气之间的反应而产生的。从环境角度来看,限制这些排放非常重要。然而,为此,重要的是了解发烟机理和动力学以及发烟成分,即在液态锰铁合金的氧化过程中的元素行为。硅锰合金由至少65 wt%的Mn和17 wt%的Si,2 wt%的C以及微量和微量元素组成。这些元素包括Fe,Mg,Al和其他源自矿石和还原剂的元素。在这项研究中,研究了在1450至1700℃的温度范围内,撞击空气射流产生的液态硅锰中烟气中微量元素的行为。讨论了控制生成机理的热力学和动力学条件。

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