期刊文献+

黄金冶炼废水处理及有价金属回收 被引量:2

Gold Smelting Wastewater Treatment and Recovery of Valuable Metals
在线阅读 下载PDF
导出
摘要 针对某金矿冶炼厂酸浸浓密机溢流水p H值较低和重金属离子浓度较高的特点,对比研究了膜处理法、离子交换树脂法和硫化沉淀法对黄金冶炼废水中Cu、Cd、Ni等金属离子的去除效果及水样中金回收的可行性。结果表明:使用膜技术处理溢流水时,浊水的金属及非金属离子含量增加了近一倍,但存在过滤速度慢的问题;采用树脂吸附水样中的As、Au效果不理想,其他含量较低的元素采用树脂吸附工艺可以达到较好的效果;硫化沉淀法效果较好,但是需结合充氧和活性炭吸附工段才能充分脱砷。3种工艺相结合可获得经济可行的废水排放及废水回用方案。 According to acid leaching with thickener overflow water at low pH and high concentration of heavy metal ions in certain gold smelter, we compared the results and feasibility of different methods including film processing method, ion exchange resin method as well as sulfide precipitation for removing Cu, Cd, Ni and other metal ions in waste water during gold smelting and recycling gold in water samples in this study. The results showed that metal and nonmetal ions content in muddy water was nearly double when applying the membrane technology to deal with the overflow of water, but filtration procedure was time-consuming on the whole;When resin adsorption method was employed to separate As, Au from water samples, we cannot obtain expected results, however, other elements with low content can be absorbed by resin effectively.The results of sulfide precipitation method were better than other mentioned methods ,nevertheless ,the method combined with oxygen,activated carbon adsorption section can sufficiently remove arsenic.Overall, it can be concluded that combination of the three methods is feasible economically for wastewater discharge and wastewater reuse in some gold smelters.
作者 孙建伟 刘青
出处 《黄金科学技术》 CSCD 2015年第2期94-97,共4页 Gold Science and Technology
基金 国家高技术研究发展计划(863计划)"氰化渣硫铁金梯级分离富集与无害化技术"(编号:2011AA06A104)资助
关键词 废水处理 膜技术 离子交换树脂 硫化沉淀 wastewater treatment membrane technology ion exchange resins sulfide precipitation
作者简介 孙建伟(1971-),男,山东海阳人,高级工程师,从事黄金矿业选冶工作。sjw197112@163.com
  • 相关文献

参考文献10

二级参考文献122

共引文献360

同被引文献30

  • 1Parga J R, Shukla S S, Carrillo Pedroza F R.Destruction of cyanide waste solutions using chlorine dioxide,ozone and titania sol[ J ].Waste Management, 2003,23 (2) : 183-191.
  • 2White D M,Pilm T A,Woolard C.Biological treatment of cya- nide containing waste water[J].Water Research, 2000,34(7) : 2105-2109.
  • 3Oliver T M, Jugoslav K, Aleksandar P, et al.Synthetic activa- ted carbons for the removal of hydrogen cyanide from air[J]. C hemical Engineering and Processing: Process Intensifica- tion, 2005,44( 11 ) : 1181-1187.
  • 4Feng X, Dreisinger D.Studies on solvent extraction of copper and cyanide from waste cyanide solution[J]Journal of Hazar- dous Materials, 2009, 169( 1/3 ) : 333-338.
  • 5Dai X,Breuer P L,Jeffrey M I.Comparison of activated carbon and ion-exchange resins in recovering copper from cyanide leach solutions [J].Hydrometallurgy,2010,101 (1/2) : 48-57.
  • 6Depei T.Comparison of activaled carbon and iron impregnated activated carbon derived from G61bas lignite to remove cyanide from water [J].Chemical Engineering Journal, 2012, 181/182:467-478.
  • 7Dai X W, Simons A, Breuer P.A iview of copper cyanide recovery technologies for the cyanidation of copper containing gold ores[ J ].Minerals Engineering,2012,25( 1 ) : 1-13.
  • 8屈学化.沉淀法综合处理高铜提金氰化废水的研究[D].西安:西安建筑科技大学,2013.
  • 9淮敏超.高铜高硫氰根氰化提金尾液综合处理实验研究[D].西安:西安建筑科技大学,2013.
  • 10Alfarra A, Frackowiak E, B6guin F.Mechanism of lithum electro- sorption by activated carbons[J].Electrochimica Acta, 2002,47(3 ) : 1545-1553.

引证文献2

二级引证文献11

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部