首页> 外文会议>International Conference on Material and Manufacturing Technology >Thiosulfate Leaching of Middle-Refractory Gold Ore with Ferricyanide as Oxidant
【24h】

Thiosulfate Leaching of Middle-Refractory Gold Ore with Ferricyanide as Oxidant

机译:用铁氰化物作为氧化剂的中间难治金矿硫酸盐浸出

获取原文

摘要

In order to decrease the consumption of lixiviant, study on dissolution of pure gold and middle-refractory gold ore using a novel thiosulfate leaching system with ferricyanide as oxidant was carried out. The results showed that the advantage of the novel system is that the thiosulfate consumption is negligible though the potential of ferricyanide is much higher than that of traditional cupric ammine complex. And compared to the ferric oxalate system, novel system could be used at relatively high pH condition which benefit to the stability of thiosulfate because ferricyanide can't transfer to iron hydroxide in base solution. It is unlikely that very high dissolution rate of gold can be obtained using an air saturated thiosulfate-ferricyanide system without thiourea catalyst. However gold dissolution rate was increased with the increasing of concentration of ferricyanid in 5 mmol/L to 30 mmol/L. When 0.1 mmol/L thiourea was presented, the dissolution of gold approximately 1.5 times faster than that of in the absence of thiourea. Leaching of middle-refractory gold ore show that both of the consumption of thiosulfate and leaching rate was decreased compare to the traditional copper-ammonia thiosulfate system. Thiourea is not stable in base solution, but it was found that gold dissolution rates can be increased with a little thiourea, the mechanism is still unclear.
机译:为了降低百叶酸的消耗,进行了用与铁氰化物作为氧化剂的新型硫代硫酸盐浸出系统的纯金和中间难治金矿溶解的研究。结果表明,新系统的优点是硫代硫酸盐消耗可忽略不计,但虽然铁氰化物的潜力远高于传统的铜莫宁络合物。与丙酸铁系统相比,新型系统可以在相对高的pH条件下使用,这有利于硫代硫酸盐的稳定性,因为铁氰化物不能转移到基础溶液中的氢氧化氢。不太可能使用没有硫脲催化剂的空气饱和硫代硫酸盐 - 铁氰化物体系获得非常高的金溶解速率。然而,随着5mmol / L至30mmol / L的浓度的增加,将金溶出速率增加。当呈现0.1mmol / L硫脲时,金的溶解大约在没有硫脲的情况下快速的1.5倍。中间耐火金矿的浸出表明,与传统的铜氨硫代硫酸盐系统相比,硫代硫酸盐和浸出率的消耗减少。硫脲在基础溶液中不稳定,但发现可以用少量硫脲增加金溶出率,该机制尚不清楚。

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