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水热合成金属硫化物的浮选行为及微观性质分析 被引量:2

Hydrothermal synthesis and flotation performance and microscopic properties of metal sulfides
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摘要 石灰中和沉淀法处理重金属废水中会产生大量的中和渣,采用化学试剂模拟中和渣,利用元素硫的歧化反应,在水热条件下将模拟渣中的氢氧化物转变成硫化物,进而,可将产生的硫化矿利用常规浮选工艺加以回收。采用X线衍射(XRD)、激光粒度仪和扫描电镜(SEM)对3种硫化物的微观性质进行分析。试验结果表明:硫化铜和硫化铅有较好的可浮性,回收率分别为91.00%和72.78%,而硫化锌浮选效果较差,回收率为28.31%;硫化铜和硫化铅比硫化锌的水热结晶好,粒径大,表面光滑。在水热过程中添加矿化剂NaOH能提高硫化锌的结晶度,水热温度提高使硫化锌的晶粒增大、表面光滑,改进后硫化锌的回收率提高至63.92%。 There is a huge amount of lime neutralization sludge in the process of wastewater treatment.Hydrothermal-sulfidation treatment can convert metal hydroxides contained in the sludge to metal sulfides,and then recovered by conventional flotation.The flotability of metal sulfides synthesized by chemical reagents simulating lime neutralization sludge was investigated.The microscopic properties of synthetic metal sulfides were analyzed by X-ray diffraction(XRD),laser diffraction particle size analyzer and scanning electron microscopy(SEM).The results show that CuS and PbS have good flotability,and the recovery is 91.00% and 72.78%,respectively.The synthetic ZnS possesses poor floatability with a recovery of 28.31%.In respect of crystallinity,crystal size and surface smoothness,CuS and PbS are superior to ZnS.It is shown that the crystallinity,the crystal size and the surface smoothness of ZnS crystals are improved when the mineralizer NaOH is added and temperature enhanced in the hydrothermal-sulfidation process of ZnS.According to analysis,the hydrothermal process of ZnS is improved,and the recovery increases to 63.92%.
出处 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2012年第9期3331-3337,共7页 Journal of Central South University:Science and Technology
基金 国家水体污染控制与治理科技重大专项(2009ZX07212-001-04) 国家杰出青年科学基金资助项目(50925417) 国家高技术研究发展计划("863"计划)重点项目(2010AA065203) 新世纪人才计划项目(NCET-10-0840) 教育部留学回国人员启动基金资助项目(教外司2010第609号)
关键词 水热合成 金属硫化物 模拟中和渣 浮选行为 微观性质 hydrothermal synthesis metal sulfides simulated lime neutralization sludge flotation performance microscopic properties
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参考文献25

  • 1Kuchar D, Fukuta T, Onyango M S, et al. Sulfidation of zinc plating sludge with Na2S for zinc resource recovery[J]. Journal of Hazardous Materials, 2006, 137(1): 185-191.
  • 2Kuchar D, Fukuta T, Onyango M S, et al. Sulfidation treatment of molten incineration fly ashes with Na2S for zinc, lead and copper resource recovery[J]. Chemosphere, 2007, 67(8): 1518-1525.
  • 3Kuchar D, Fukuta T, Onyango M S, et al. Sulfidation treatment of copper-containing plating sludge towards copper resource recovery[J]. Hazardous Materials, 2006, 138(1/2): 86-94.
  • 4任占誉,王吉坤,魏昶,李勇.低品位氧化铅锌矿的硫化及浮选[J].云南冶金,2009,38(1):27-29. 被引量:13
  • 5LI Ming-Guo, SUN Chang-Jung, GAU Sue-Huai, et al. Effects of wet ball milling on lead stabilization and particle size variation in municipal solid waste incinerator fly ash[J]. Journal of Hazardous Materials, 2010, 174(1/3): 586-591.
  • 6CHEN Ye, CHEN Jian-hua, GUO Jin. A DFT study on the effect of lattice impurities on the electronic structures and floatability of sphalerite[J], Minerals Engineering, 2010, 23(14): 1120-1130.
  • 7CHEN Jian-hua, WANG Lei, CHEN Ye, et al. A DFT study of the effect of natural impurities on the electronic structure of galena[J]. International Journal of Mineral Processing, 2011, 98(3/4): 132-136.
  • 8LI Yu-qiong, CHEN Jian-hua, CHEN Ye, et al. Density functional theory study of influence of impurity on electronic properties and reactivity of pyrite[J]. Transaction Nonferrous Metals Society of China, 2011, 21(8): 1887-1895.
  • 9LI Yong, WANG Ji-kun, WEI Chang, et al. Sulfidation roasting of low grade lead-zinc oxide ore with elemental sulfur[J]. Minerals Engineering, 2010, 23(7): 563-566.
  • 10陈继斌.铜录山氧化铜铁矿水热硫化一温水浮选试验[J],矿冶工程,1983,8(4):33-35.

二级参考文献78

共引文献117

同被引文献31

  • 1贾宝平,贺跃辉,唐建成,邓意达,黄伯云,刘业翔.ZnS掺杂技术研究及应用现状[J].粉末冶金材料科学与工程,2002,7(2):119-126. 被引量:4
  • 2李存兄,魏昶,邓志敢,李兴彬,李旻廷,樊刚,徐红胜.合成异极矿元素硫水热硫化动力学(英文)[J].中国有色金属学会会刊:英文版,2013,23(6):1815-1821. 被引量:1
  • 3邱冠周,伍喜庆,王毓华,冯其明,胡岳华.近年浮选进展[J].金属矿山,2006,35(1):41-52. 被引量:48
  • 4汤会香,严密,张辉,崔天峰,倪利红,杨德仁.不同络合剂对化学水浴法制备ZnS薄膜性能的影响[J].太阳能学报,2006,27(4):373-376. 被引量:7
  • 5Kuehar D, Fukuta T, Onyango M S, et al. Sulfidation of zinc plating sludge with Na2S for zinc resource recovery[J]. Journal of Hazardous Materials, 2006, 137(1): 185-191.
  • 6WANG Jun, LU Jinfeng, ZHANG Qiwu, et al. Mechanochemical sulfidization of nonferrous metal oxides by grinding with sulfur and iron[J]. Industrial & Engineering Chemistry Research, 2003, 23(42): 5813-5818.
  • 7KE Yong, CHAI Liyuan, LIANG Yanjie, et al. Sulfidation of heavy-metal-containing metallurgical residue in wet-milling processing[J]. Minerals Engineering, 2013, 53:136-143.
  • 8CHEN Ye, CHEN Jianhua, LAN Lihong, et al. The influence of the impurities on the flotation behaviors of synthetic ZnS[J]. Minerals Engineering, 2012, 27/28: 65-71.
  • 9LIANG Yanjie, CHAI Liyuan, LIU Hui, et al. Hydrothermal sulfidation of zinc-containing neutralization sludge for zinc recovery and stabilization[J]. Minerals Engineering, 2012, 25(l): 14-19.
  • 10MIN Xiaobo, YUAN Cuiyu, CHAI Liyuan, et al. Hydrothermal modification to improve the floatability of ZnS crystals[J]. Minerals Engineering, 2013, 40:16-23.

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