首页> 外文期刊>Russian Journal of Non-Ferrous Metals >Rational Processing of Refractory Copper-Bearing Ores
【24h】

Rational Processing of Refractory Copper-Bearing Ores

机译:耐火铜轴承矿石的合理加工

获取原文
获取原文并翻译 | 示例
           

摘要

The results of material composition studies of four samples of refractory copper-bearing ores of the Uzelga deposit are presented along with the results of studies of technological solutions to increase their processing parameters. The refractoriness of ores is associated with a thin dissemination up to micron size and close interbreedings of ore and rock minerals. Iron sulfides are presented by a wide range of minerals: pyrite and marcasite, melnikovite, arsenic pyrite, and arsenopyrite; sooty melnikovite has an increased flotation activity. The grinding of iron sulfides from 89 to 29% is followed by a proportional increase in easily floatable rock minerals to 45% and clay to 9%. These properties make these sulfides difficult to process and retain ore refractoriness to the flotation concentration. The content of copper sulfides in ore samples varies from 3.32 to 7.29%; the relative portion of copper sulfide in a form of tennantite in different samples of deposit varies from 29 to 93%. Copper is also present in a form of chalcopyrite and bornite. The best flotation activity of tennantite can be seen in a neutral and slightly acidic medium, in contrast with the standard flotation regime for chalcopyrite and bornite with butyl xanthate in a high-alkaline calcareous medium. Free grains of copper minerals can be selectively extracted into intercycled concentrates during grinding of no more than 60% of the class -71 mu m. The technology of flotation in a low-alkaline medium with M-TF selective sulfhydril collector in the intercycle copper flotation and refinement cycle of the copper concentrate is developed for refractory copper-bearing ores with a variable tennantite content. Aeration is applied to suppress the flotation activity of melnikovite, which makes it possible to attain 80% copper recovery into a conditional copper concentrate. The fine inclusions of bornite, tennantite, chalcopyrite, and sphalerite into pyrite makes it rational to obtain copper-pyrite and copper-zinc-pyrite products with a yield up to 12% for pyro- and hydrometallurgical processing, along with the isolation of enriched copper concentrates.
机译:uzelga沉积物的四个耐火铜矿矿石样品的材料组成研究结果随着技术溶液的研究结果而增加,以增加其加工参数。矿石的耐火性与微米尺寸和矿石和岩石矿物的微米尺寸和闭合杂交的稀释度相关。硫化铁通过各种矿物质提出:硫铁矿和马尔基酸盐,甜菜肽,砷黄铁矿和砷黄石; SOOTY Melnikovite有增加的浮选活动。从89〜29%的硫化硫化硫化物的研磨之后是易于漂浮的岩石矿物成比例增加至45%,粘土至9%。这些性质使这些硫化物难以加工并将矿石耐火性保留到浮选浓度。矿石样品中硫化铜的含量从3.32〜7.29%变化;在不同沉积物样品中以腺嘌呤形式的硫化铜的相对部分因29%至93%而变化。铜也以黄铜矿和凤蝶形式存在。与中性和微酸性介质可以看出吖啶的最佳浮选活性,与黄铜矿的标准浮选制度相反,在高碱性钙质培养基中用丁二属丁酸丁酸丁酯燃烧。在磨削期间,可以选择性地萃取铜矿物的自由晶粒在-71μm级别的60%以上的磨削过程中。在铜浓缩物中的间环铜浮选和细化循环中具有M-TF选择性巯基收集器的低碱性介质中的浮选技术,用于具有可变的胆管含量的耐火铜含量。应用曝气以抑制甜菜肽的浮选活性,这使得可以将80%的铜回收率达到条件铜浓缩物。铁矿石,吖酸盐,黄铜矿和荆棘的细含量使其理性地获得铜 - 硫铁矿和铜 - 锌 - 黄铁矿产品,其浓度和富含富含富含铜的氢化冶金加工的产率高达12%,以及富含铜的分离浓缩物。

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