期刊文献+

高碱氧化铜矿堆浸过程中的化学沉淀与调控 被引量:7

Chemical precipitation and control in process of heap leaching of high-alkali oxide copper ore
下载PDF
导出
摘要 以高碱氧化铜矿为研究对象,运用电镜扫描技术、X线衍射技术研究堆浸过程中化学沉淀的成分及沉淀物的表面形貌,并通过添加不同的防垢剂对化学沉淀进行调控。研究结果表明:CaSO4·2H2O沉淀是堆浸过程中化学沉淀的主要成分,属于一类沉淀物,不受pH控制。CaSO4·2H2O沉淀结晶受饱和度影响,扩散机制是晶核生长的主导机制。防垢剂对CaSO4·2H2O沉淀具有明显的溶蚀作用,其中以水解聚马来酸酐HPMA对CaSO4·2H2O的溶解效果最好,其添加量与对CaSO4·2H2O沉淀溶蚀能力呈指数函数关系,Ca2+的浓缩倍数最高可达到1 078.54%。 Using high-alkaline oxidation copper ore as the research object,electron microscope scanning technology and X-ray diffraction technology were used to research the composition of chemical precipitation and observe the surface morphology of precipitation,and different anticrustators were added to control production of chemical precipitation.The results show that the main chemical precipitation in the process of heap leaching of high-alkali oxide copper ore is CaSO4·2H2O,belongs to the first precipitation and not controlled by pH.The crystallizing is affected by the saturation of CaSO4·2H2O,and the main growing machining of crystal nucleus is diffusion mechanism.The anticrustator plays an obvious dissolution role to CaSO4·2H2O,especially the anticrustator HPMA owns the best effects,and additive amount is in exponential relationship with the dissolution ability to precipitation.The concentration multiple of Ca2+ is up to 1 078.54%.
出处 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2012年第5期1851-1857,共7页 Journal of Central South University:Science and Technology
基金 国家自然科学基金资助项目(50934002 51074013 51104011) 教育部长江学者与创新团队发展计划项目(IRT0950)
关键词 堆浸 化学沉淀 沉淀特性 防垢剂 浓缩倍数 heap leaching chemical precipitation precipitation character anticrustator concentration multiple
  • 相关文献

参考文献21

  • 1陈喜山.论堆浸工艺中溶浸液的渗透问题[J].黄金,1997,18(2):37-40. 被引量:11
  • 2Rinck-Pfeiffer S, Ragusa S, Sztajnbok P, et al. Interrelationships between biological chemical and physical processes as an analog to clogging in aquifer storage and recovery (ASR) wells[J]. Water Research, 2000, 34(7): 2110-2118.
  • 3Pavelic P, Dillon P J, Barry K E, et al. Water quality effects on clogging rates during reclaimed water ASR in a carbonate aquifer[J]. Journal of Hydrology, 2007, 334(1/2): 1.
  • 4吴爱祥,李青松,尹升华,姜立春.改善高泥矿堆渗透性的机理研究[J].湘潭矿业学院学报,2003,18(4):1-5. 被引量:28
  • 5吴爱祥,尹升华,李建锋.离子型稀土矿原地溶浸溶浸液渗流规律的影响因素[J].中南大学学报(自然科学版),2005,36(3):506-510. 被引量:76
  • 6王贻明,吴爱祥,左恒,杨保华.微粒渗滤沉积作用对铜矿排土场渗流特性的影响[J].中国有色金属学报,2007,17(12):2074-2078. 被引量:13
  • 7Aberg B. Void ratio of noncohesive soils and similar materials[J]. Journal of Geoteehnieal Engineering, ASCE, 1992, 118(9): 1315-1334.
  • 8Aberg B. Hydraulic conductivity of noncohesive soils[J]. Journal of Gcotcchnical Engineering, ASCE, 1992, 118(9): 1335-1347.
  • 9Aberg B. Washout of grains from filtered sand and gravel materials[J]. Journal of Geotechnieal Engineering, ASCE, 1993, 119(1): 36-53.
  • 10Wafting H R, Elliot A D, Maley M, et al. Leaching of a low-grade, copper-nickel sulfide ore: Key parameters impacting on Cu recovery during column bioleaehing[J]. HydrometaUurgy, 2004, 97: 204-212.

二级参考文献55

共引文献168

同被引文献140

引证文献7

二级引证文献33

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