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Effects of Si-bearing minerals on the conversion of hematite into magnetite during reductive Bayer digestion

机译:Si承载矿物对减少拜耳消化期间赤铁矿转化成磁铁矿的影响

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摘要

Converting hematite to magnetite in Bayer liquor at elevated temperature plays a key role in the exploration of a cleaner technology for alumina production with high iron content bauxite. In this work, the effects of Si-bearing minerals on hematite conversion during reductive Bayer digestion were investigated by studying the reaction kinetics and mineralogy. The experimental rate data of the hematite conversion in the presence of zero-valent iron during high temperature Bayer digestion agree well with the unreacted shrinking-core model under internal diffusion control, and the activation energy for the conversion is determined to be 45.4 +/- 1.8 kJ.mol(-1). The interaction between the dissolved Si or the granular sodium aluminate silicate hydrate and iron powder inhibits the transformation of metallic iron into HFeO2- or magnetite. Further, the dissolved Si co-precipitates with iron-containing species to form Si-Fe hetero-aggregates, which impedes species diffusion, thus inhibits the hematite to magnetite conversion. The inhibitory effects of different Si-bearing minerals are significantly different. This work contributes to a better understanding of iron mineral conversion in Bayer liquor at elevated temperatures and to the optimization of the reductive Bayer digestion process.
机译:将赤铁矿转化为拜耳液中升降机的磁铁矿在高温下探索氧化铝生产的清洁技术中发挥着关键作用。在这项工作中,通过研究反应动力学和矿物学研究了轴承矿物对减少拜耳消化期间赤铁矿转化的影响。在高温拜耳消化期间零价铁的存在下赤霉素转化的实验速率数据与内部扩散控制下的未反应的收缩核模型相得益彰,并确定转换的激活能量为45.4 +/- 1.8 kj.mol(-1)。溶解的Si或粒状铝酸钠水合物和铁粉之间的相互作用抑制金属铁转化为HFeO 2或磁铁矿。此外,溶解的Si共沉淀用含铁物质来形成Si-Fe异质聚集体,其阻碍物种扩散,从而抑制赤铁矿到磁铁矿转化。不同Si承载矿物的抑制作用显着不同。这项工作有助于更好地理解拜耳液中的铁矿石转化在升高的温度下以及还原拜耳消化过程的优化。

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