...
首页> 外文期刊>Minerals >Application of Falcon Centrifuge as a Cleaner Alternative for Complex Tungsten Ore Processing
【24h】

Application of Falcon Centrifuge as a Cleaner Alternative for Complex Tungsten Ore Processing

机译:猎鹰离心机在钨精矿加工中的应用

获取原文
           

摘要

Scheelite (CaWO 4 ) is one of the main raw material for the production of tungsten. It is usually encountered in skarn deposits where it is commonly associated with other calcium minerals as fluorite, apatite, and calcium silicates. Worldwide, scheelite is upgraded to the chemical grades by direct flotation, but the separation efficiency remains limited due to similar flotation behaviors of scheelite and gangue minerals with fatty acid. The only solutions used to overcome this issue involve high energy consumption or ecotoxic reagents. In the present study, a novel method based on the use of a centrifugal Falcon concentrator was investigated to perform an efficient elimination of gangue minerals and fine particles as well as an acceptable scheelite recovery enabling a decrease of the flotation reagents consumption. The performances of the two types of laboratory Falcon bowls, Falcon UltraFine (UF) and Falcon Semi-Batch (SB), were modeled using the design of experiments (DoE) methodology, which allowed to determine the best operating parameters for each bowl. The separation performances were mainly affected by the rotary speed and the pulp density for the Falcon UF and by the rotary speed and the fluidization pressure for the Falcon SB. Due to the fluidization pressure, the Falcon SB exhibited higher gangue minerals rejection with slightly lower recoveries than the Falcon UF. Overall, the optimized Falcon SB test allowed to reach 71.6%, 22.6%, 17.2%, and 12.6% for scheelite, calcium salts, dense calcium silicates, and light non-calcic silicates respectively while the desliming efficiency reached 98.8%. For comparison purposes, a classical hydrocyclone allowed to attain 89.1%, 89.3%, 79.5%, and 76.5% for scheelite, calcium salts, dense calcium silicates, and light non-calcic silicates respectively while the desliming efficiency reached 52.0%. Theses results can be used reliably to assess the separation performances of an industrial Falcon C which can be regarded, along with Falcon SB, as a sustainable and efficient gangue rejection method for complex W skarn ore, which allows the use of environmentally friendly reagents during downstream flotation stages.
机译:白钨矿(CaWO 4)是生产钨的主要原料之一。它通常在矽卡岩矿床中遇到,那里通常与其他钙矿物质如萤石,磷灰石和硅酸钙有关。在全球范围内,通过直接浮选将白钨矿升级到化学级,但是由于白钨矿和脉石矿物与脂肪酸的相似浮选行为,分离效率仍然受到限制。用于解决此问题的唯一解决方案涉及高能耗或生态毒性试剂。在本研究中,研究了一种基于离心式Falcon浓缩器的新颖方法,可有效消除脉石矿物和细颗粒以及可接受的白钨矿回收,从而减少了浮选试剂的消耗。使用实验设计(DoE)方法对两种类型的实验室Falcon猎鹰碗的性能进行了建模,它们可以确定每个碗的最佳操作参数。分离性能主要受Falcon UF的转速和果肉密度以及Falcon SB的转速和流化压力的影响。由于流化压力,与猎鹰超滤相比,猎鹰SB表现出更高的rejection石矿物截留率,回收率略低。总体而言,经过优化的Falcon SB试验可使白钨矿,钙盐,致密硅酸钙和轻质非钙硅酸盐分别达到71.6%,22.6%,17.2%和12.6%,而脱泥效率达到98.8%。为了进行比较,传统水力旋流器的白钨矿,钙盐,致密硅酸钙和轻质非钙硅酸盐分别达到89.1%,89.3%,79.5%和76.5%,而脱泥效率达到52.0%。这些结果可以可靠地用于评估工业Falcon C的分离性能,该性能可与Falcon SB一起视为复杂的W矽卡岩矿石的一种可持续,高效的石排除方法,该方法允许在下游使用环保试剂浮选阶段。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号