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应用选择性磁罩盖法磁选分离镍黄铁矿与蛇纹石 被引量:4
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作者 卢冀伟 袁致涛 +2 位作者 李丽匣 刘炯天 陆帅帅 《工程科学学报》 EI CSCD 北大核心 2018年第3期313-320,共8页
针对镍黄铁矿和蛇纹石浮选难分离,提出采用磁罩盖法进行磁分离.结果表明,控制一定的矿浆物化条件,随着磁种磁铁矿的添加,镍黄铁矿的磁选回收率随之升高,而蛇纹石的回收率基本保持很低,可实现两者的良好分离.人工混合矿分离结果表明,磁... 针对镍黄铁矿和蛇纹石浮选难分离,提出采用磁罩盖法进行磁分离.结果表明,控制一定的矿浆物化条件,随着磁种磁铁矿的添加,镍黄铁矿的磁选回收率随之升高,而蛇纹石的回收率基本保持很低,可实现两者的良好分离.人工混合矿分离结果表明,磁种质量分数为5%时,获得的精矿Ni品位为19.89%,回收率为92.46%,Mg O质量分数为4.72%;X射线衍射和扫描电镜分析结果显示磁铁矿在镍黄铁矿表面产生了罩盖,在蛇纹石表面未产生明显的罩盖;Zeta电位测试和DLVO理论计算结果表明,添加六偏磷酸钠后,蛇纹石表面电性由正变负,而对镍黄铁矿和磁铁矿表面电性未产生显著影响,从而使磁铁矿与蛇纹石间的相互作用变为排斥,而与镍黄铁矿之间仍为吸引,因而磁铁矿选择性罩盖在镍黄铁矿表面,增强其磁性,实现与蛇纹石的磁分离. 展开更多
关键词 镍黄铁矿 蛇纹石 铁矿 选择性罩盖 选分离
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Enhancement of pentlandite surface magnetism and implications for its separation from serpentine via magnetic separation 被引量:3
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作者 袁致涛 卢冀伟 +2 位作者 刘炯天 李丽匣 王双玉 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2017年第1期204-210,共7页
The magnetism of pentlandite surface was enhanced through the selective precipitation of micro-fine magnetite fractions on pentlandite surfaces. This was achieved through adjustment of slurry pH and addition of surfac... The magnetism of pentlandite surface was enhanced through the selective precipitation of micro-fine magnetite fractions on pentlandite surfaces. This was achieved through adjustment of slurry pH and addition of surfactants. The results showed that at pH 8.8 with the addition of 100 g/t sodium hexametaphosphate, 4.5 L/t oleic acid, and 4.5 L/t kerosene, significant amount of fine magnetite particles adhered to the pentlandite surface, while trace amount of coating was found on serpentine surfaces. Thus, the magnetism of pentlandite was enhanced and pentlandite was well separated from serpentine by magnetic separation under the magnetic field intensity of 200 kA/m. Scanning electron microscopy (SEM) and zeta potential measurement were performed to characterize changes of mineral surface properties. Calculations of the extended Derjaguin-Landau-Verwey-Ocerbeek (EDLVO) theory indicated that, in the presence of surfactants the total interaction energy between magnetite and pentlandite became stronger than that between magnetite and serpentine. This enabled the selective adhesion of magnetite particles to pentlandite surfaces, thereby enhancing its magnetism. 展开更多
关键词 PENTLANDITE SERPENTINE micro-fine magnetite magnetic separation selective magnetic coating
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