首页> 外文期刊>Hydrometallurgy >Preparation of synthetic rutile by hydrochloric acid leaching of mechanically activated Panzhihua ilmenite
【24h】

Preparation of synthetic rutile by hydrochloric acid leaching of mechanically activated Panzhihua ilmenite

机译:机械活化攀枝花钛铁矿的盐酸浸出制备金红石。

获取原文
获取原文并翻译 | 示例
           

摘要

Dissolution of mechanically activated Panzhihua ilmenite in hydrochloric acid for the preparation of synthetic rutile was investigated. Both the dissolution and its coupled titanium hydrolysis were greatly enhanced by the mechanical pretreatment. Increases in the lattice strain and surface area of ilmenite induced by energetic ball milling were responsible for the enhanced dissolution. The rapid hydrolysis led to formation of quantities of the nanosized primary particles, giving rise to a solid/liquid separation problem. The 15 min milled ilmenite, however, yielded an easy-to-filter hydrolysate due to formation of porous, micron-sized, secondary particles during the dissolution. The crystallization and aggregation behaviour of the primary particles were probably related to both the surface property of the un-reacted solid and the ferric ion concentration in solution. The technology for preparation of synthetic rutile was systematically investigated. The optimum milling and dissolution conditions were as follows: milling in air for 15 min, hydrochloric acid concentration 20 percent, initial reaction temperature 100 deg C, ilmenite/20 percent acid mass ratio 1 g:5.5 g, reaction time >= 6 h. The synthetic rutile prepared under the optimum conditions contained 92 percent TiO_2 and 2.1 percent Fe_2O_3 as well as combined CaO and MgO of 0.28 percent. The results demonstrate that the mechanical pretreatment can take the place of the traditional high temperature pretreatment of ilmenite and avoid the dissolution being conducted under pressurized condition.
机译:研究了机械活化的攀枝花钛铁矿在盐酸中的溶解情况,以制备合成金红石。通过机械预处理大大提高了溶解度及其偶联的钛水解。高能球磨引起的钛铁矿晶格应变和表面积的增加是增加溶解的原因。快速水解导致形成一定数量的纳米级初级颗粒,从而引起固/液分离问题。然而,由于在溶解过程中形成了多孔,微米级的次级颗粒,经过15分钟的碾磨的钛铁矿产生了易于过滤的水解产物。初级粒子的结晶和聚集行为可能与未反应的固体的表面性质和溶液中的铁离子浓度有关。系统研究了合成金红石的制备工艺。最佳研磨和溶解条件如下:在空气中研磨15分钟,盐酸浓度为20%,初始反应温度为100℃,钛铁矿/ 20%酸质量比为1 g:5.5 g,反应时间> = 6 h。在最佳条件下制得的合成金红石粉包含92%的TiO_2和2.1%的Fe_2O_3以及0.28%的CaO和MgO组合。结果表明,机械预处理可以代替传统的钛铁矿高温预处理,避免了在加压条件下进行溶解。

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