王进明, 王毓华, 余世磊, 余胜利, 于福顺. 十二胺浮选黄锑矿的作用机理[J]. 工程科学学报, 2014, 36(6): 730-735. DOI: 10.13374/j.issn1001-053x.2014.06.004
引用本文: 王进明, 王毓华, 余世磊, 余胜利, 于福顺. 十二胺浮选黄锑矿的作用机理[J]. 工程科学学报, 2014, 36(6): 730-735. DOI: 10.13374/j.issn1001-053x.2014.06.004
WANG Jin-ming, WANG Yu-hua, YU Shi-lei, YU Sheng-li, YU Fu-shun. Flotation mechanism of cervantite with dodecylamine[J]. Chinese Journal of Engineering, 2014, 36(6): 730-735. DOI: 10.13374/j.issn1001-053x.2014.06.004
Citation: WANG Jin-ming, WANG Yu-hua, YU Shi-lei, YU Sheng-li, YU Fu-shun. Flotation mechanism of cervantite with dodecylamine[J]. Chinese Journal of Engineering, 2014, 36(6): 730-735. DOI: 10.13374/j.issn1001-053x.2014.06.004

十二胺浮选黄锑矿的作用机理

Flotation mechanism of cervantite with dodecylamine

  • 摘要: 利用单矿物实验,研究了十二胺(DDA)对黄锑矿的浮选行为.研究发现:pH值为2.0~8.0时,黄锑矿浮选回收率达到90%以上;pH值为8.0~10.0时,黄锑矿浮选回收率急剧降低;当pH值〉10.0时,十二胺对黄锑矿几乎没有捕收作用.十二胺浮选溶液化学分析结果表明,十二胺阳离子(DDA+)是对黄锑矿产生捕收作用的主要成分.采用密度泛函理论研究了黄锑矿晶体以及十二胺离子和分子的电子结构性质,考察了十二胺离子、十二胺分子和水分子在黄锑矿表面的吸附行为.三种吸附质在黄锑矿表面吸附能顺序为DDA 〉 H2 O 〉 DDA+,十二胺离子可排开黄锑矿表面的水化膜,实现黄锑矿的疏水上浮,十二胺离子主要通过物理吸附形式吸附于黄锑矿表面.

     

    Abstract: The flotation behavior of cervantite with dodecylamine (DDA) was studied. The results show that the recovery rate of cervantite reaches more than 90% in the pH range of 2. 0 to 8. 0. But it sharply decreases in the pH range of 8. 0 to 10. 0. When pH〉 10, DDA has little collecting capacity on cervantite. The flotation solution chemical analysis of dodecylamine indicates that dodecyl-amine cations are the main components of the cervantite collector. The electronic structures of cervantite crystals and dodecylamine ions and molecules were studied using the density functional theory. The adsorption behaviors of dodecylamine ions, dodecylamine mole-cules, and water molecules were simulated. It is found that the adsorption energy order of these adsorbents on cervantite surfaces is DDA 〉 H2 O 〉 DDA+. DDA+ can remove hydration films on cervantite surfaces to make cervantite hydrophobic. DDA+ adsorbs on cer-vantite surfaces mainly by physical adsorption.

     

/

返回文章
返回