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Sulfidation Behaviour of Blast Furnace Dust at High Temperatures

机译:高温高炉灰尘的硫化行为

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The sulfidation behaviour of blast furnace dust (BFD) with sulfur at high temperatures was investigated. The effects of the sulfur dosage, roasting temperature and time were studied on the basis of thermodynamic calculations. The results revealed that the Zn distribution ratio in ZnS increased from 13.28 to 92.01% after adopting the proposed process. The increase in the sulfur dosage, roasting temperature and time was conducive to the sulfidation of ZnO in the sample, but higher temperatures were not beneficial for sulfidation, which was ascribed to an accelerated volatilization rate of sulfur. The existence of carbon in the sample could decrease the O-2 partial pressure, which is advantageous for the generation of ZnS. In addition, it was found that the generated FeO was sulfurized and then proceeded to form iron sulfides. The produced iron sulfides were further dissolved into ZnS to form (Zn, Fe)S compounds. The growth of ZnS particles largely depended upon the roasting temperature, and the growth was significantly accelerated when the temperature increased to 850 degrees C. It is feasible that the sphalerite was transformed into wurtzite at higher temperatures.
机译:研究了高温下高温硫的高炉粉尘(BFD)的硫化行为。在热力学计算的基础上研究了硫剂量,焙烧温度和时间的影响。结果表明,采用拟议过程后,ZnS中的Zn分布比率从13.28增加到92.01%。硫剂量增加,焙烧温度和时间的增加有利于样品中ZnO的硫化,但较高的温度没有有益的硫化,这归因于硫的加速挥发率。样品中的碳的存在可以降低O-2分压,这对于产生ZnS是有利的。此外,发现产生的FeO被硫化,然后进行以形成硫化铁。将产生的硫化物进一步溶解到ZnS中以形成(Zn,Fe)的化合物。 ZnS颗粒的生长在很大程度上依赖于焙烧温度,并且当温度增加到850℃时,该生长显着加速。在较高温度下将闪锌矿转化为紫尾石是可行的。

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