首页> 外文期刊>International Journal of Mineral Processing >Sensitivity of pentlandite flotation in complex sulfide ores towards pH control by lime versus soda ash: Effect on ore type
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Sensitivity of pentlandite flotation in complex sulfide ores towards pH control by lime versus soda ash: Effect on ore type

机译:石灰与纯碱控制硫化物矿石中五方铁矿浮选对pH值的敏感性:对矿石类型的影响

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An extreme sensitivity of pentlandite flotation towards pH regulator at pH 10 has been documented using two types of complex nickel-copper sulfide ores in Northern Ontario, Canada. The samples studied are from Sudbury and Timmins areas and differ in their mafic and ultramafic associations and degree of dissemination. It has been shown that the pentlandite in the Timmins ore is completely depressed in the lime system at a collector dosage that readily floats the pentlandite in the Sudbury ore. The general mechanism of pentlandite depression by lime is believed to be similar to that of pyrite. However, the sensitivity of pentlandite in the Timmins ore is greatly affected by its ultramafic associations and is likely related to slime coating by serpentine minerals. The tenacity of hy-drophilic calcium species in the case of the Sudbury ore is believed to be counteracted by a greater activation potential (e.g., level of Cu/Ni) and collector action. When lime is replaced by soda ash, adverse effect induced by adsorbed calcium species on pentlandite is largely eliminated. Benefit resulting from better dispersion of serpentinized species in the Timmins ore is also observed using soda ash. Chalcopyrite's strong floatability overcomes difficulties experienced by pentlandite and floats well both in the lime and soda ash systems. Pyrrhotite is less floatable than chalcopyrite and pentlandite in both lime and soda ash systems. In the lime system, pyrite depression is almost the same as pentlandite depression, but unlike pentlandite it continues to be non-floatable even in the soda ash system.
机译:在加拿大北部安大略省,使用两种类型的复杂镍-铜-硫化物矿石已记录了五氧化碳浮选对pH调节剂的极端敏感性。所研究的样本来自萨德伯里和蒂明斯地区,并且在镁铁质和超镁铁质的联系和传播程度方面有所不同。已经显示出,Timmins矿石中的五芒铁矿在石灰体系中以捕收剂的剂量被完全压制,该捕集剂剂量易于使该五氧化碳石漂浮在Sudbury矿石中。据信石灰对五方铁矿压下的一般机理与黄铁矿相似。但是,Timmins矿中的五芒铁矿的敏感性受其超镁铁质缔合的影响很大,并且可能与蛇纹石矿物的粘泥涂层有关。据认为,在萨德伯里矿石中,亲水性钙物质的坚韧性被更大的活化电势(例如铜/镍的水平)和集电作用所抵消。当用苏打灰代替石灰时,吸附的钙物质对五碳石的不利影响已基本消除。使用苏打灰还观察到蛇毒化物种在Timmins矿石中的更好分散所带来的收益。黄铜矿具有很强的漂浮性,克服了五方铁矿遇到的困难,并且在石灰和纯碱体系中均能很好地漂浮。在石灰和苏打灰系统中,硫铁矿的漂浮性均不及黄铜矿和五方铁矿。在石灰系统中,黄铁矿凹陷几乎与五方陨石凹陷相同,但与五方陨石不同,即使在苏打灰系统中,黄铁矿凹陷仍不易挥发。

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