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Analysis on Inherent Characteristics and Behavior of Recycling Dust in Freeboard of COREX Melter Gasifier

机译:COREX熔融气化炉干舷内在粉尘的固有特性和行为分析

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The generator gas of melter gasifier inevitably carries a lot of dust, which would be transported to the freeboard for recycling, as a result of the existence of the fluidized bed. The recycling dust, with an attractive concentration of C and Fe, is considered as a useful secondary material, thus it is important to investigate the inherent characteristics and behavior of recycling dust in the freeboard. In the present work, the recycling dust characteristics are investigated through the granulometry, chemical, mineralogical and micro analysis. The recycling dust has an irregular shape and an uneven granulometric distribution with the following primary minerals: Fe, FeO, SiO_(2), 2CaO·SiO_(2) and 2CaO·Al_(2)O_(3)·SiO_(2). Furthermore, a three-dimensional mathematical model at steady state is developed to describe the recycling dust combustion and the freeboard temperature distribution, which significantly influences the recycling dust behavior. The region of high temperature above 3000 K can be observed in front of DB due to the combustion of C in the recycling dust, with a combustion ratio of almost 100%. Based on the above analysis, the recycling dust behavior is complex. Fe and FeO in the recycling dust may be oxidized and finally smelts into liquid iron, while other minerals smelt into molten slag. It is worth noting that the phenomena of circulation and accumulation of alkali metals, ZnO and S could occur, despite that most of them are discharged out of the melter gasifier through the generator gas and molten slag.
机译:熔融气化炉的产生气体不可避免地携带大量粉尘,由于存在流化床,这些粉尘将被输送到干舷进行回收。具有有吸引力的C和Fe浓度的回收粉尘被认为是有用的辅助材料,因此,重要的是研究干舷中回收粉尘的固有特性和行为。在目前的工作中,通过粒度分析,化学,矿物学和微观分析研究了回收粉尘的特性。回收粉尘具有以下主要矿物质的不规则形状和不规则的粒度分布:Fe,FeO,SiO_(2),2CaO·SiO_(2)和2CaO·Al_(2)O_(3)·SiO_(2)。此外,建立了一个稳态的三维数学模型来描述回收粉尘燃烧和干舷温度分布,这严重影响了回收粉尘的行为。由于回收粉尘中C的燃烧,在DB的前方可以看到3000 K以上的高温区域,燃烧率几乎为100%。基于以上分析,回收粉尘行为复杂。回收粉尘中的Fe和FeO可能被氧化,最终熔成液态铁,而其他矿物则熔成熔渣。值得注意的是,尽管碱金属,ZnO和S大部分通过生成气体和熔渣从熔融气化炉中排出,但仍可能发生循环和累积现象。

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