首页> 外文期刊>Metallurgical and Materials Transactions B >Thermodynamics Calculation and Experimental Study on Separation of Bismuth from a Bismuth Glance Concentrate Through a Low-Temperature Molten Salt Smelting Process
【24h】

Thermodynamics Calculation and Experimental Study on Separation of Bismuth from a Bismuth Glance Concentrate Through a Low-Temperature Molten Salt Smelting Process

机译:低温熔盐熔炼铋铋精矿中铋的热力学计算与实验研究

获取原文
获取原文并翻译 | 示例
           

摘要

The main purpose of this study is to characterize and separate bismuth from a bismuth glance concentrate through a low-temperature, sulfur-fixing smelting process. This article reports on a study conducted on the optimization of process parameters, such as Na2CO3 and zinc oxide wt pct in charging, smelting temperature, smelting duration on the bismuth yield, resultant crude bismuth grade, and sulfur-fixing rate. A maximum bismuth recovery of 97.31 pct, crude bismuth grade of 96.93 pct, and 98.23 pct sulfur-fixing rate are obtained when a charge (containing 63.50 wt pct of Na2CO3 and 22.50 wt pct of bismuth glance, as well as 5 pct in excess of the stoichiometric requirement of zinc oxide dosage) is smelted at 1000 K (727 °C) for 150 minutes. This smelting operation is free from atmospheric pollution because zinc oxide is used as the sulfur-fixing agent, which can capture sulfur from bismuth sulfide and form the more thermodynamic-stable compound, zinc sulfide. The solid residue is subjected to a mineral dressing operation to obtain suspension, which is filtered to produce a cake, representing the solid particles of zinc sulfide. Based on the results of the chemical content analysis of the as-resultant zinc sulfide, more than 93 pct zinc sulfide can be recovered, and the recovered zinc sulfide grade can reach 60.20 pct. This material can be sold as zinc sulfide concentrate or roasted to be regenerated as zinc oxide.
机译:这项研究的主要目的是通过低温,固硫法冶炼铋和铋锭浓缩物中的铋。本文报道了关于优化装料,熔炼温度,铋的熔炼时间等Na 2 CO 3 和氧化锌wt pct等工艺参数的研究。收率,所得的粗铋品位和固硫率。当装料(包含Na.sub <2> CO 3 63.50 wt%时,最高铋回收率达到97.31 pct,粗铋品位为96.93 pct,固硫率达到98.23 pct。然后,在1000 K(727°C)的温度下熔化22.50 wt%的铋扫视物以及超出氧化锌剂量化学计量要求的5 pct。该熔炼操作不受大气污染,因为使用氧化锌作为固硫剂,它可以从硫化铋中捕获硫,并形成热力学更稳定的化合物硫化锌。对固体残余物进行矿物选矿操作以获得悬浮液,将其过滤以产生块状物,其代表了硫化锌的固体颗粒。根据所得到的硫化锌的化学含量分析结果,可以回收到93 pct以上的硫化锌,并且回收的硫化锌等级可以达到60.20 pct。该材料可作为硫化锌精矿出售或经焙烧再生为氧化锌。

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