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首页> 外文期刊>Minerals Engineering >Sodium sulfate activation mechanism on co-sulfating roasting to nickel copper sulfide concentrate in metal extractions, microtopography and kinetics
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Sodium sulfate activation mechanism on co-sulfating roasting to nickel copper sulfide concentrate in metal extractions, microtopography and kinetics

机译:金属萃取,微拷贝和动力学中硫酸钠焙烧碳镍氧化镍氢化钠的活化机制

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摘要

Due to the complexity of occurrence of valuable metals and high content of alkali gangue in nickel-copper sulfide concentrate, traditional pyrometallurgical processing is not suitable. In this work, a two-stage co-sulfating roasting process was used to selectively extract valuable metals from Chinese nickel-copper sulfide concentrate. A mixture of (NH4)(2)SO4 and Na2SO4 was selected as the co-sulfating agents. The effect of the dosage of (NH4)(2)SO4 and Na2SO4, first stage roasting temperature, roasting time and second roasting temperature on metal's extractions were investigated. XRD, SEM, DTA-TG, and DSC-TG were used to reveal the mechanism of action of Na2SO4 and the mineral phase transformations in the two-stage sulfating roasting process. The results show that nearly all of Ni and Co, Cu, and 1.12% of Fe were extracted at the mass ratio of ammonium sulfate to ore of 3.5, first roasting at 500 degrees C for 2 h, dosage of sodium sulfate of 4 g (10 g ore), followed by second roasting at 680 degrees C for 2 h, then water leaching at 95 degrees C for 2 h. Na2S2O7 generated from Na2SO4 in the roasting process, shrinks the particle size of the ore, decrease the surface area of the roasted product, significantly promotes extent of the sulfating of metals, in particular for Ni. Thermal analysis kinetics indicates that Na2SO4 significantly reduces the apparent activation energy of the sulfating roasting process. The metal bearing mineral phases were transformed into sulfates or sodium double or ternary sulfates in the first roasting process, then the sodium double sulfates of Na3Fe(SO4)(3) were decomposed.
机译:由于镍硫化铜浓缩物中有价值金属和碱煤矸石高含量的复杂性,传统的高温冶金加工不合适。在这项工作中,使用两阶段共硫化焙烧过程来选择性地从中镍硫化铜浓缩物中提取有价值的金属。选择(NH 4)(2)SO 4和Na 2 SO 4的混合物作为共硫酸盐剂。研究了(NH 4)(2)SO4和Na 2 SO 4,第一阶段焙烧温度,焙烧时间和金属萃取物的第二焙烧温度的影响。用于XRD,SEM,DTA-TG和DSC-TG用于揭示Na2SO4的作用机制和两级硫酸化焙烧过程中的矿物相变。结果表明,几乎所有的Ni和Co,Cu和1.12%的Fe都以硫酸铵与3.5的矿石的质量比提取,首先在500℃下焙烧2小时,剂量为4g硫酸钠( 10g矿石),然后在680℃下烘烤2小时,然后在95℃下水浸出2小时。从Na2SO4产生的Na2S2O7在烘焙过程中产生,缩小矿石的粒度,降低烘焙产品的表面积,显着促进金属硫化的程度,特别是Ni。热分析动力学表明NA2SO4显着降低了硫酸化焙烧过程的表观活化能量。将金属矿物相在第一焙烧过程中转化为硫酸盐或双或三元硫酸钠,然后将Na 3 Fe(SO 4)(3)的双硫酸钠分解。

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