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首页> 外文期刊>Russian Journal of Non-Ferrous Metals >Physical Methods and Flotation Practice in the Beneficiation of a Low Grade Tungsten-Bearing Scheelite Ore
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Physical Methods and Flotation Practice in the Beneficiation of a Low Grade Tungsten-Bearing Scheelite Ore

机译:低级钨矿石矿石益处的物理方法和浮选实践

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摘要

In this paper, beneficiation studies were carried out on a low-grade tungsten-bearing scheelite from Nezam Abad ore with total WO~(3)grade of 0.11%. Mineralogical studies showed that scheelite is mainly distributed in the ore and gangue minerals include Quartz and Tourmaline. Liberation degree ( d ~(80)) of tungsten- bearing scheelite is achieved around particles size 150 μm. Gravity concentration, magnetic and flotation methods were conducted by using experimental designs including fractional factorial and response surface methodology. Gravity concentration results indicated that jig separator could not be able to improve tungsten grade in size fraction +600–1750 μm; however, shaking table increased feed grade up to 27.05% with total recovery more than 50% by using four stages concentration in the size range of +125–600 μm. Multi Gravity Separator (MGS) applied on the intermediate products, improved efficiently the total tungsten recovery of the circuit. The results of flotation practice on the pre-concentrated product demonstrated that WO~(3)grade could be increased up to 9.2% with total recovery of 27.04% by using one stage rougher and four stages of cleaning. Different methods including MGS, wet and dry magnetic separation were considered for upgrading fines from grinding stages; however, only MGS result was satisfactory. The MGS produced a product with WO~(3)grade 0.64% and total recovery 93%.
机译:在本文中,在Nezam Abad Ore的低级钨砂矿上进行了益处研究,总WO〜(3)级为0.11%。矿物学研究表明,岩石主要分布在矿石和煤矸石矿物中,包括石英和电气石。含钨硅藻土的溶解度(D〜(80))在颗粒尺寸150μm周围实现。通过使用包括分数阶乘和响应面方法的实验设计进行重力浓度,磁性和浮选方法。重力浓度结果表明,夹具分离器无法改善尺寸分数+600-1750μm的钨级;然而,摇动台增加了饲料等级,最高可达27.05%,通过使用四个级浓度为+125-600μm的四个阶段浓度,总回收率大于50%。施加在中间产物上的多重重力分离器(MGS),有效地提高了电路的总钨钨。浮选实践对预浓度的产品的结果表明,通过使用一个阶段的粗糙和清洁阶段,总回收率和清洁阶段的总回收率增加了9.2%。认为包括Mgs,湿和干磁分离的不同方法用于从磨削阶段升级罚款;但是,只有MGS的结果令人满意。 MgS生产的产品具有WO〜(3)级0.64%,总回收率93%。

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