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MECHANISM OF SELECTIVE CHLORINATION OF REDUCED LIMONITIC NICKEL LATERITE USING A SOLID CHLORIDE AGENT

机译:固体氯化物试剂选择性还原氯化镍镍红石的机理

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The mechanism of the selective chlorination of nickel and cobalt in reduced limonitic laterite was investigated. Reduced ores were obtained from the reduction roasting of a limonitic nickel laterite. The thermal decomposition of related chlorides and the selective chlorination of the reduced ore were carefully studied using Differential Thermal analysis - Thermogravimetry (DTA-TG), X-Ray Diffraction and chemical leaching methods. In the temperature range of 300 -500 °C, aluminum chloride hexahydrate was chosen as chloride agent. During the selective chlorination, reduced ore was partly chlorinated by hydrogen chloride generated from the thermal decomposition of chloride agent. Then the oxydrolysis of ferrous chloride re-generated hydrogen chloride was used to further the chlorination. Finally, iron was mostly rejected as hematite, while nickel and cobalt were selectively chlorinated. More than 91%Ni , 90%Co and about 4%Fe in the chlorinated ore was extracted using a water leaching method.
机译:研究了柠檬酸浓度的镍和钴选择性氯化的机理。从褐铁镍红土的钙质烘烤中获得了减少的矿石。使用差分热分析仔细研究相关氯化物的热分解和还原矿石的选择性氯化 - 热升降法(DTA-Tg),X射线衍射和化学浸出方法。在300 -500℃的温度范围内,选择氯化铝六水合物作为氯化物剂。在选择性氯化过程中,通过从氯化物剂的热分解产生的氯化氢部分部分氯化矿石。然后使用氯化亚铁再生氯化氢的氧化溶解物以进一步氯化氯化物。最后,铁大多被拒绝为赤铁矿,而镍和钴被选择性氯化。使用水浸出法提取超过91%的Ni,90%Co和约4%Fe。

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