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首页> 外文期刊>Journal of Materials Research and Technology >Reductive roasting mechanism of copper slag and nickel laterite for Fe-Ni-Cu alloy production
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Reductive roasting mechanism of copper slag and nickel laterite for Fe-Ni-Cu alloy production

机译:Fe-Ni-Cu合金生产铜渣和镍镍铜渣的还原烘焙机理

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Direct reduction-magnetic separation process (DRMSP) is a highly effective and clean method to upgrade the complex resources, which has been widely used to recovery the value metals in copper slag (CS) and nickel laterite (NL) in recent years. Adequate growth of the alloy particles is a key parameter influencing the complete extraction of alloys from CS and NL in this process. Therefore, the liquid phase formation mechanism, growth kinetics of the alloy particles, and the correlation between the alloy particle growth and liquid phase formation were studied to reveal the synergistic effect of the co-reduction of CS and NL. The results indicated that fayalite in the copper slag reacted with forsterite in nickel laterite to form augite group minerals with low melting points, resulting in more liquid phase formation in the reductive roasting process. A comparison with the reduction kinetic parameters of the single nickel laterite showed that the growth index and activation energy decreased significantly from 2.85 and 272.98 KJ/mol to 2.08 and 171.99 KJ/mol, respectively, after the addition of 40% copper slag, which confirmed that copper slag promoted the particle growth. Moreover, the liquid phase increased the total cohesive force between the alloy particles, revealing the correlation between alloy particle growth and liquid phase.
机译:直接减速 - 磁分离过程(DRMSP)是升级复杂资源的高效和清洁的方法,该方法已被广泛用于近年来恢复铜渣(CS)和镍红土(NL)中的价值金属。合金颗粒的充分生长是影响该过程中CS和NL完全提取合金的关键参数。因此,研究了合金颗粒的液相形成机制,生长动力学,以及合金颗粒生长和液相形成之间的相关性,揭示了Cs和Nl的共同还原的协同效应。结果表明,铜渣中的费尔酸盐与镍后镍渣反应,以形成具有低熔点的胚胎矿物,导致还原烘焙过程中的更液相形成。与单镍后镍的减少动力学参数的比较表明,在添加40%铜渣后,分别从2.85和272.98 kJ / mol显着显着降低至2.08和171.99 kJ / mol。铜渣促进了颗粒生长。此外,液相增加了合金颗粒之间的总粘性力,揭示了合金颗粒生长和液相之间的相关性。

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