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Thermodynamics and phase transformation analysis on selective sulphidation of limonitic nickel ores mixed with carbon additives

机译:热力学和相变分析与碳添加剂混合的素质镍矿石的选择性亚硝化分析

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Previous studies assume that carbon addition at selective sulphidation of laterite nickel ores facilitate the sulphidation of nickel and cobalt in the ores. The presence of carbon in the selective sulphidation of limonitic nickel ores using sulphur was analyzed by thermodynamics and phase transformation. Limonite nickel ores were mixed with 5% sulfur and 4% lignite coal and were formed with pelletizer, roasted at 1000°C for 1 hour (heating rate 10°C/min). Cooled in the furnace by flowed N_2 gas. Thermal characteristics of nickel ores pellets show that a number of reactions take place during the heating process at temperatures of 80°C, 280°C, 480°C, 680°C and 960°C. The five reactions are endothermic reactions which are characterized by a decrease in heat flow (μV) on the DSC analysis curve and weight losses on the TGA analysis curve. Addition of 5% sulfur resulted in lower dehydroxylation reaction temperature around 20°C compared to fresh ore. The presence of carbon obtained from the addition of lignite coal resulted in sulphidation reaction did not occurs. Phases formed after roasted are magnetite (Fe_3O_4) and olivine [(Fe, Mg)_2SiO_4]. Monosulphide Solid Solution includes troilite (FeS) and marcasite (FeS_2) formed in limonite nickel ores mixed with only 5% sulphur without carbon additive when heated at 600°C.
机译:以前的研究假定在红外镍矿石的选择性亚硝化时添加碳添加促进矿石中镍和钴的硫化物。通过热力学和相变分析使用硫的素质镍矿石选择性亚核的选择性碳的存在。将柠檬酸镍镍矿石与5%硫和4%褐煤混合,并用造粒机形成,在1000℃下烘烤1小时(加热速率10℃/ min)。通过流动的N_2气体在炉中冷却。镍矿石粒料的热特性表明,在80℃,280℃,480℃,680℃和960℃的温度下,在加热过程中发生许多反应。五种反应是吸热反应,其特征在于在DSC分析曲线上的热流(μV)降低和TGA分析曲线上的重量损失。与新鲜矿石相比,加入5%硫导致较低的脱羟基化反应温度约为20℃。从加入褐煤煤得到的碳的存在导致亚砜反应没有发生。焙烧后形成的相是磁铁矿(Fe_3O_4)和橄榄石[(Fe,Mg)_2siO_4]。单硫酸盐固溶体包括在褐铁矿镍矿石中形成的毒石(FES)和马基酯(FES_2),仅在600℃下加热时在没有碳添加剂的情况下混合的5%硫。

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