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Mechanism of sodium chloride in promoting reduction of high-magnesium low-nickel oxide ore

机译:氯化钠促进高镁低镍氧化物矿还原的机理

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摘要

Sodium chloride has been proved that it is an effective promoter for the reduction of high-magnesium, low-nickel oxide ore. The aim of current work is to clarify the promotion behavior of sodium chloride in the roasting reduction process. The influence of moisture on the reduction of ore in the presence of sodium chloride is studied to get clear comprehension of promotion process. In the presence of moisture, the HCl is produced by pyrohydrolysis of sodium chloride for chlorinating nickel and iron oxides, moreover, interactions between metallic oxides and sodium chloride are also a way for chlorination at high temperature (>802 °C); subsequently, the metal chloride would be reduced by reductant. In the absence of moisture, the magnetic separation results show that the recoveries of iron and nickel have a significant increase; moreover, olivine structure would be destroyed gradually with the increase of roasting temperature in the action of sodium chloride, and the sodium chloride existed in high-magnesium, low-nickel oxide ore could make the NiO isolate from NiO-bearing minerals. The NiO reacts with Fe2O3 at high temperature to form NiFe2O4, which is conductive to the formation of Ni-Fe alloy during the reduction process.
机译:氯化钠已被证明是还原高镁,低镍氧化物矿石的有效促进剂。当前工作的目的是弄清氯化钠在焙烧还原过程中的促进行为。研究了水分对氯化钠存在下矿石还原的影响,从而清楚地了解了促进过程。在存在水分的情况下,氯化氢是通过氯化钠的热水解产生的氯化物,用于氯化镍和氧化铁,此外,金属氧化物和氯化钠之间的相互作用也是高温(> 802°C)氯化的一种方式;随后,金属氯化物将被还原剂还原。在没有水分的情况下,磁选结果表明,铁和镍的回收率显着提高。此外,在氯化钠的作用下,随着焙烧温度的升高橄榄石结构将逐渐被破坏,高镁,低镍氧化物矿石中存在的氯化钠可以使NiO从含NiO的矿物中分离出来。 NiO在高温下与Fe2O3反应形成NiFe2O4,在还原过程中有助于形成Ni-Fe合金。

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