会议论文详细信息
2nd Mineral Processing and Technology International Conference
The role of sodium-based additives on reduction process of nickel lateritic ore
工业技术(总论);矿业工程
Nurjaman, F.^1 ; Rahmahwati, A.^2 ; Karimy, M.F.^3 ; Hastriana, N.^1 ; Shofi, A.^1 ; Herlina, U.^1 ; Suharno, B.^2 ; Ferdian, D.^2
Research Unit for Mineral Technology, Indonesian Institute of Sciences, South Lampung, Indonesia^1
Dept. of Metallurgy and Materials Engineering, Faculty of Engineering, Universitas Indonesia, Depok, Indonesia^2
Research Unit for Natural Product Technology, Indonesian Institute of Sciences, Yogyakarta, Indonesia^3
关键词: Chemical compositions;    Energy dispersive X ray spectroscopy;    Favorable conditions;    Nickel laterite;    Reduction process;    Reduction temperatures;    Selective reduction;    X ray fluorescence;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/478/1/012001/pdf
DOI  :  10.1088/1757-899X/478/1/012001
学科分类:工业工程学
来源: IOP
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【 摘 要 】

In this present work, the selective reduction of nickel laterite was conducted by using 5 to 15 wt. % of sodium carbonate, sodium chloride and sodium sulfate as additives. The 5% wt. of palm shell charcoal was used as the reductant. The selective reduction process for nickel laterite was carried out at 1150°C for 60 minutes followed by wet magnetic separation using 500 Gausses permanent magnet. The characterization of reduced ore was performed by using X-ray Diffraction, optical microscope and Scanning Electron Microscope with Energy Dispersive X-ray Spectroscopy, while the chemical composition of concentrate or ferronickel was identified by X-ray Fluorescence. The results showed that the increase of nickel grade and recovery of nickel laterite was significantly more affected by the addition of sodium sulfate rather than sodium carbonate and sodium chloride. The ferronickel particle was agglomerated and growth with the increasing of reduction temperature and dosses of additives, thus it provided favorable conditions for the separation of ferronickel from impurities in the magnetic separation process.

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