首页> 外文期刊>South african journal of chemical engineering >The effects of mixtures of potassium amyl xanthate (PAX) and isopropyl ethyl thionocarbamate (IPETC) collectors on grade and recovery in the froth flotation of a nickel sulfide ore
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The effects of mixtures of potassium amyl xanthate (PAX) and isopropyl ethyl thionocarbamate (IPETC) collectors on grade and recovery in the froth flotation of a nickel sulfide ore

机译:戊基黄药酸钾(PAX)和异丙基乙基硫代氨基甲酸酯(IPETC)捕收剂的混合物对硫化镍矿石泡沫浮选中品位和回收率的影响

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Potassium amyl xanthate (PAX) and sodium isobutyl xanthate (SIBX) are commonly used collectors in both the bulk and selective froth flotation of sulfide ores. These thiol xanthate collectors are conventionally mixed together as well as with more selective thiol collectors such as dithiophosphates (DTP) and dithiocarbamates (DTC), in order to improve selectivity. With deteriorating nickel sulfide ores, more selective collectors and collector mixtures are desired for the efficient extraction of nickel. Thionocarbamates (TC) are another group of thiol collectors used for selective froth flotation of sulfide minerals. Thionocarbamates are especially used in the selective froth flotation of chalcopyrite over pyrite and galena, but little is known about its selectivity with regards to nickel. Thionocarbamates are also more stable over larger pH ranges in comparison to xanthates and they possess beneficial frothing properties. This study compared the effects of using potassium amyl xanthate (PAX), isopropyl ethyl thionocarbamate (IPETC), sodium isobutyl xanthate (SIBX) and their mixtures in the froth flotation of a pentlandite ore. In the mixtures of PAX or SIBX with IPETC, the xanthate accounted for 95.5?mol% and for the PAX and SIBX mixture a 50:50 mixture was used. This study showed that the highest cumulative nickel grades were obtained with PAX, SIBX and there mixture. The highest cumulative nickel recoveries were obtained with IPETC and its mixtures with PAX and SIBX (50–62%). Highlights ? PAX, IPETC, SIBX and their mixtures in the froth flotation of a pentlandite ore were considered. ? Highest cumulative nickel grade was obtained with PAX:SIBX mixture. ? PAX gave the lowest cumulative recovery of nickel (77.0%). ? PAX:IPETC mixture resulted in 84.6% cumulative recovery of nickel. ? The addition of the thionocarbamate collector is only beneficial with regards to cumulative mass and water recovery.
机译:戊基黄原酸钾(PAX)和异丁基黄原酸钠(SIBX)在硫化矿石的批量浮选和选择性泡沫浮选中都是常用的收集器。通常将这些硫醇黄药收集剂以及更具选择性的硫醇收集剂如二硫代磷酸盐(DTP)和二硫代氨基甲酸酯(DTC)混合在一起,以提高选择性。随着硫化镍矿石的恶化,需要更多选择性的捕收剂和捕收剂混合物以有效地提取镍。硫代氨基甲酸酯(TC)是另一类硫醇捕收剂,用于选择性地浮选硫化物矿物。硫代氨基甲酸酯特别用于黄铜矿在黄铁矿和方铅矿上的选择性泡沫浮选中,但对镍的选择性知之甚少。与黄原酸酯相比,亚硫酰氨基甲酸酯在较大的pH范围内也更稳定,并且具有有益的起泡性能。这项研究比较了戊基矿砂泡沫浮选中使用戊基黄原酸钾(PAX),硫代氨基甲酸异丙基乙酯(IPETC),异丁基黄原酸钠(SIBX)及其混合物的效果。在PAX或SIBX与IPETC的混合物中,黄药占95.5?mol%,对于PAX和SIBX混合物,使用50:50的混合物。这项研究表明,使用PAX,SIBX及其混合物可获得最高的累积镍品位。使用IPETC及其与PAX和SIBX的混合物可获得最高的累积镍回收率(50-62%)。强调 ?考虑了五氧化二铁矿石泡沫浮选中的PAX,IPETC,SIBX及其混合物。 ?使用PAX:SIBX混合物可获得最高的累积镍等级。 ? PAX的镍累积回收率最低(77.0%)。 ? PAX:IPETC混合物导致镍的累计回收率为84.6%。 ?硫代氨基甲酸酯收集剂的添加仅在累积质量和水回收方面是有益的。

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