首页> 外文会议>8th International Mineral Processing Symposium Antalya/Turkey/16-18 October 2000 >Influence of soda-ater glass binder and pelletization conditions on the quality of fluorite pellets
【24h】

Influence of soda-ater glass binder and pelletization conditions on the quality of fluorite pellets

机译:苏打水玻璃粘结剂和造粒条件对萤石粒料质量的影响

获取原文
获取原文并翻译 | 示例

摘要

Fluorite concentrate is used in chemical, ceramic, optical and metallurgical industries. By the annual fluorite consumption in the world, metallurgy takes the third place, while in Yugoslavia, metallurgy is on the second place after the chemical industry. Number of ore veins that is able to give the coarse-pieces of fluorite concentrate, has decreased. This is the main reason of using the agglomeration process for the floated concentrate to obtain coarse pieces of fluorite that is used as a fluxing agent in ferrous metallurgy. In that regard, this research was done with two aims: to determine possibilities of obtaining fluorite concentrate pellets by the use of sodium silicate (Na_2SiO_3) as a binder; and to determine the influence of pelletization conditions on the qualityof the fluorite pellets, from "Ravnaja-Krupanj" deposit. Influences of binder type and pelletization conditiosn on the mechanical characteristics of finsiehd products (impact and stress resistance of fluorite pellets), with the aim to obtain a high quality fo fluorite pellets, were investigated with particular attention. Chemical analysis, X-ray diffraction analysis of powder, grain size analysis and determination of impact and pressure resistance of pellets were the methods used in the research. Internal standard of latent user, metallurgical concern "Sartid-1913", was used as determination criteria of quality. It was concluded that change of pelletization conditions (quantity of binder, time of homogenization, amount of added water, etc.) makes significant changes of pellets quality, and that fluorite flotation concentrate from "Ravnaja- Krupanj" deposit could be successfully pelletized with soda-waterglass binder. The main conclusion is: possible high-quality substitution of improted coarse-pieces fluorite in the domestic metallurgy.
机译:萤石精矿用于化学,陶瓷,光学和冶金行业。在世界上每年的萤石消费量中,冶金位居第三,而在南斯拉夫,冶金位居化学工业之后,位居第二。能够产生粗片萤石精矿的矿脉数量减少了。这是对浮选精矿采用附聚工艺以获得粗萤石的主要原因,该粗萤石被用作黑色冶金中的助熔剂。在这方面,本研究的目标是两个:确定通过使用硅酸钠(Na_2SiO_3)作为粘合剂获得萤石精矿颗粒的可能性;并确定制粒条件对“ Ravnaja-Krupanj”矿床中萤石颗粒质量的影响。为了获得高质量的萤石颗粒,特别研究了粘合剂类型和造粒条件对finsiehd产品机械性能(萤石颗粒的抗冲击性和耐应力性)的影响。研究方法包括化学分析,粉末的X射线衍射分析,粒度分析以及粒料的抗冲击性和耐压性测定。潜在用户的内部标准,冶金问题“ Sartid-1913”被用作质量的确定标准。结论是制粒条件的改变(粘合剂的数量,均质时间,加水量等)使制粒质量发生了显着变化,并且可以成功地将苏打制得的“ Ravnaja-Krupanj”矿中的萤石浮选精矿制粒。 -水玻璃粘合剂。主要结论是:在国内冶金中可能用优质的替代粗粒萤石。

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