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The effect of sulfur content of rotary kiln fuel on the composition of nickel laterite calcine

机译:旋转窑燃料硫含量对镍红斑煅烧组成的影响

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摘要

Rotary kiln-electric furnace (RK-EF) process is the main pyrometallurgical route for ferronickel production from nickel laterite ores. Coal is used as a common fuel for calcination of nickel laterites in rotary kiln. Due to the depletion of high-quality coal with low impurity content, high-sulfur coal has been used as fuel in nickel laterite rotary kilns. This investigation examines the behavior of sulfur present in the rotary kiln fuel in the calcination stage. Using coal with higher sulfur content, improving the reducing atmosphere in the furnace, and increasing the fuel consumption result in an increase in sulfur content of the nickel laterite calcine. Higher sulfur deportation from the gas phase to the calcine was observed by raising the temperature from 600 to 800 degrees C; however, increasing the temperature to 900 degrees C decreases the sulfur deportation percentage due to the recrystallization of the silicate compounds. Iron sulfide was identified as the main sulfur-containing compound in the calcine.
机译:回转窑电炉(RK-EF)工艺是来自镍红土矿石的铁镍生产的主要热算线。煤用作旋转窑中镍晶体煅烧的共同燃料。由于具有低杂质含量的高质量煤的消耗,高硫煤已被用作镍红土旋转窑中的燃料。本研究审查了煅烧阶段在旋转窑燃料中存在的硫的行为。使用具有较高硫含量的煤,改善炉中的还原气氛,并提高燃料消耗导致镍红土煅烧的硫含量的增加。通过将温度从600至800℃升高,观察到从气相中的较高硫驱逐出来;然而,由于硅酸盐化合物的重结晶,将温度增加到900℃的温度降低降低硫的驱逐率。将硫化铁鉴定为煅烧中的含有含硫的含硫化合物。

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