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Recovery of Iron Ore Fines and Ultrafines from Tailings by Using Wet High-intensity Magnetic Separation - JONES 'WHIMS

机译:通过使用湿的高强度磁分离 - 琼斯的尾矿,从尾矿回收铁矿石的罚款和超细

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The quality and quantity of Australia's secondary deposits, which include tailings streams and tailings dams, are higher than most countries' primary deposits. In addition, these secondary deposits have already been mined and processed, meaning that the recovery of high-grade product requires low capital and operating costs.The most widely used process for the recovery of these valuable fine and ultra-fine hematite iron particles is the wet high-intensity magnetic separation technique, originally developed by Dr Jones over 55 years ago. Many of the original machines are still working today.The aim of this paper is to demonstrate the capabilities in terms of grade and yield of using sophisticated magnetic separation modules. All results and figures are obtained from test work and design and engineering work with material from the Pilbara. In addition, consideration is given to dewatering of iron ore product and tailings.Two types of tailings have been identified for processing. Firstly, tailings that have already been deposited in a tailings storage facility, and secondly, live tailings streams from an existing wet iron ore beneficiation plant. In both cases, the technical and practical results are shown along with relevant flow sheets and plant layouts. Finally, this paper highlights the total predicted power and water consumption, capital requirements and projected operating expenses.The results show that the operating costs are significantly lower than the mining and processing operations that are required for an equivalent amount of iron ore. The recovery of iron depends on various factors but is within the 30-50 per cent range at an equivalent grade to the mainstream product. Another significant benefit is that the magnetic separation process is water positive, meaning that water is released rather than added in the process.The processing of the Pilbara's secondary deposits will therefore result in an overall reduction in operating costs, an increase in product yield from a plant, extend the life-of-mine and offer environmental benefits by reducing the tailings footprint and water usage.The quality and quantity of Australia's secondary iron ore deposits and tailings are such that many other countries would judge these as equivalent to primary deposits. Furthermore, these tailings are already mined, available and liberated to such an extent that the recovery of a valuable product is highly economical in terms of capital expenses and operating expenses.
机译:澳大利亚二级存款的质量和数量,包括尾矿流和尾矿坝,高于大多数国家的主要矿床。此外,这些二级存款已经开采和加工,这意味着高档产品的恢复需要低资本和运营成本。最广泛使用的是恢复这些有价值的精细和超细赤铁矿颗粒的过程是湿高强度磁性分离技术,最初由琼斯博士开发超过55年前。许多原始机器仍在今天工作。本文的目的是在等级和使用复杂磁分离模块的屈服率方面展示能力。所有的结果和数字都是从测试工作和设计和工程工作中获得的,利用Pilbara的材料。此外,还考虑了铁矿石产品和尾矿的脱水。已经确定了尾矿类型进行处理。首先,已经在尾矿储存设施中沉积的尾矿,其次,来自现有的湿铁矿石受益厂的实时尾矿流。在这两种情况下,技术和实际结果都显示出相关的流量表和植物布局。最后,本文突出了预测的电力和耗水量,资本要求和预计的运营费用。结果表明,运营成本明显低于相当数量的铁矿石所需的采矿和加工操作。铁的恢复取决于各种因素,但在60-50%的范围内,以相当于主流产品。另一个显着的好处是磁性分离过程是水阳性的,这意味着水被释放而不是加入过程中。因此,Pilbara的二级沉积物的加工将导致运营成本的总体降低,来自a的产品产量增加植物,延长矿山寿命,并通过减少尾矿占地面积和净水来提供环境效益。澳大利亚的二级铁矿矿床和尾矿的质量和数量是许多其他国家将判断出与原发性存款等同于原发性存款。此外,这些尾矿已经开采,可用和解放到这种程度上,即在资本费用和运营费用方面的恢复是高度经济的。

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