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首页> 外文期刊>Particulate Science and Technology: An International Journal >Application of three xanthates collectors on the recovery of nickel and pentlandite in a low-grade nickel sulfide ore using optimum flotation parameters
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Application of three xanthates collectors on the recovery of nickel and pentlandite in a low-grade nickel sulfide ore using optimum flotation parameters

机译:用最佳浮选参数在低级硫化镍矿石中施加镍和五哚钛矿回收的应用

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摘要

One of the challenges encountered when processing nickel ore is the presence of other minerals like chalcopyrite, pyrrhotite, pyrite and amphiboles in mineral dressing. Hence, there is need to investigate the selectivity of some collectors at optimum flotation parameters (particle size, milling time, pH and flotation cell) to maximize nickel and pendlandite recovery. Three xanthate collectors, namely potassium amyl xanthate (PAX), sodium isobutyl xanthate (SIBX) and sodium ethyl xanthate (SEX), were investigated in this study. In order to achieve this aim, the physical treatment of nickel sulfide ore and percentage chemical composition of nickel sulfide ore were investigated. The analyses of the concentrates were done using x-ray diffraction (XRD) and x-ray fluorescence spectroscopy (XRF). The optimum nickel and pentlandite recovery was achieved at particle size of 64.73 mu m milled for 1.5h, pH of 9.65 and using a new flotation cell. Also, SEX collector recovered more nickel and pentlandite contents compared to PAX and SIBX collectors when optimum parameters of particle size, milling time, pH and flotation cell were considered. In conclusion, the results showed that the selectivity of SEX is the strongest and will recover more pentlandite in a complex and low-grade nickel sulfide ore.
机译:当加工镍矿时时遇到的挑战之一是存在矿物敷料中的黄铜矿,Pyrrhotite,黄铁矿和搅拌器等其他矿物质。因此,需要研究一些收集器在最佳浮选参数(粒度,铣削时间,pH和浮选细胞)以最大化镍和死亡岩恢复的选择性。在本研究中研究了三个黄原料收集器,即氨基氨基磺酸钾(PAX),异丁基黄嘌呤(SIBX)和乙基黄原酸钠(性)。为了实现这一目标,研究了硫化镍矿石的物理处理和硫化镍矿石的百分比化学组成。使用X射线衍射(XRD)和X射线荧光光谱(XRF)进行浓缩物的分析。在粒度为64.73μm铣削1.5h,pH为9.65并使用新的浮选细胞,实现最佳镍和五棱钛矿回收。此外,当考虑粒度,铣削时间,pH和浮选细胞的最佳参数时,性收集器与PAX和SIBX收集器相比恢复了更多的镍和五岩石含量。总之,结果表明,性别的选择性是最强的,并将在复合物和低级硫化镍矿石中恢复更多的五菱石。

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