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Value enhancement of olivine process dust through air classification

机译:通过空气分类增强Olivine Process Dust的增强

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As a result of the production of dry olivine sand products atA/S Olivin's production plant at Aheim in western Norway, an annual quantity of some 20000-30000 t of process dust is produced. The bulk of this material is currently being sold as a slag conditioner at a relatively low price;;hence, alternative uses of the process dust are now being sought. Information regarding the chemical composition of the material as a function of particle size facilitates product modifications through exclusion or mixing of individual size fractions. This paper demonstrates how such information can be obtained from air classification experiments when these are combined with chemical analysis of the produced size fractions. The classification and subsequent analysis of the olivine process dust revealed that the finer size fractions had high loss on ignition (LOI) values and were relatively low in MgO when compared with the bulk analysis. Removal of the finer fractions resulted in a remaining coarse product of significantly higher quality. The coarse material could be used as a raw material for further processing;;it could be recycled or it could constitute a new product in itself.
机译:由于在挪威Aheim的Aheim在Aheim中生产干橄榄石砂产品ATA / S Olivin的生产厂,产生了20000-30000 T的每年数量的过程灰尘。本材料的大部分目前以相对较低的价格作为炉渣护发素出售;因此,现在正在寻求处理灰尘的替代用途。关于材料的化学成分作为粒度的函数的信息,可通过排除或混合单个尺寸级分来促进产物修饰。本文展示了当这些信息与所产生的尺寸分数的化学分析结合时,如何从空气分类实验获得这些信息。橄榄石工艺粉尘的分类和随后分析显示,与本体分析相比,粒径尺寸级分具有高损耗点火(LOI)值,并且在MgO中相对较低。去除更细分的级分,导致剩余的粗产物,质量明显更高。粗材料可用作进一步加工的原料;它可以再循环或者它可以本身可以构成新产品。

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