期刊文献+

用弗雷德盐沉降去除水体中镉的絮凝形态 被引量:3

Removal of cadmium flocculation morphology in water by sedimentation with Friedel′s salt
下载PDF
导出
摘要 用微/纳结构的弗雷德盐乳液作吸附-絮凝剂以絮凝法去除水体中重金属镉。结果表明,弗雷德盐絮凝沉降镉的去除率达97.8%。背散射与点能谱的研究表明,弗雷德盐在水处理过程中经历了溶解-再结晶,形成稳定性更高的六方柱形方解石和无定型氢氧化铝。水体中部分镉离子吸附或共沉淀在六方柱形方解石表面;另有部分镉离子吸附或共沉淀在水解生成的无定形氢氧化铝胶体中。XRD谱图比较证实,还有部分镉以类质同象取代方解石中的钙进入晶格。 Friedel's salt emulsion with micro / nano structure was firstly used as adsorbent-flocculant to remove heavy metal cadmium from wastewater.Resuhs showed the Friedel' s salt removal rate of cadmium was as high as 97.8%.Back eletron scattering (BEI) SEM and EDS study proved that Friedel's salt experienced a dissolution-recrystallization process in water treatment and formed hexagonal prism-shaped calcite and amorphous aluminum hydroxide.A part of cadmium in the wastewater was absorbed or coprecipitated onto the surface of hexagonal prism-shaped calcite ; another part of cadmium was absorbed or coprecipitated in the amorphous aluminum hydroxide colloid.XRD result showed there was still a small part of cadmium entered into lattices by replacing calcium in the calcite as the form of isomorphism.
出处 《无机盐工业》 CAS 北大核心 2012年第5期40-43,共4页 Inorganic Chemicals Industry
基金 贵州省省长专项资金项目([2009]04号) 贵州省高层次人才特助经费资助(TZJF[2009]18号)
关键词 弗雷德盐 除镉 溶解-再结晶 类质同象 絮凝形态学 Friedel's salt removal of cadmium dissolution-recrystallization isomorphism flocculation morphology
  • 相关文献

参考文献7

  • 1《贵州省土壤污染状况调查报告》编写组.贵州省土壤污染状况调查报告[Z].贵阳:贵州省环境保护厅,2009.
  • 2章兴华,周丽芸.一种生产弗雷德盐的方法:中国,201110048719.9[P].2011-03-02.
  • 3蓝俊康,丁凯,王焰新.钙矾石对Pb,Zn,Cd的化学俘获[J].桂林工学院学报,2005,25(3):330-334. 被引量:14
  • 4Renaudin G, Kubel F, Rivera J P, et al.Structural phase transition and high temperature phase structure of Friedels sah,3CaO · Al2O3·CaCI2·10H20 [J ].Cement and Concrete Research, 1999,29 : 1937-1942.
  • 5潘兆鲁.晶体学与矿物学(上册)[M].北京:教育出版社,1984:145-159.
  • 6南京大学地质学系.地球化学(修订本)[M].北京:科学出版社,1984:157-164.
  • 7Wu Y Y,Chi Y,Bai H M ,et al. Effective removal of selenate from aqueous solutions by the Friedel phase [J].Joumal of Hazardous Materials ,2010,176(1/2/3) : 193-198.

二级参考文献15

  • 1蓝俊康.污染物的固化/安定化处理技术的研究进展[J].化工环保,2004,24(z1):138-140. 被引量:2
  • 2蓝俊康,王焰新.几种含铬钙矾石的合成试验研究[J].混凝土,2004(7):16-18. 被引量:5
  • 3蓝俊康.由液相SO_4^(2-)浓度的变化解译钙矾石的热稳定性[J].桂林工学院学报,2004,24(4):480-482. 被引量:7
  • 4Albino V, Cioffi R,Marroccoli M,et al.Potential application of ettringite generating systems for hazardous waste stabilization[J]. Journal of Hazardous Materials, 1996, 51(1-3): 241-252.
  • 5Bonen D, Sarkar S L.The present state of the art of immobilization of hazardous heavy metals in cement-based materials[A].Michael W.G.Shondeep L.S.Proceedings of an Engineering Foundation Conference on Advances in Cement and Concrete[C].Durham NH:American Society of Civil Engineers,1994:481-498.
  • 6Zhang Min,EricjReardon.Removal of B,Cr,Mo and Se from wastewater by incorporation into hydrocalumite and ettringite[J].Environ. Sci. Technol, 2003,37: 2947-2952.
  • 7Lin S L,Cross W H,Chian E S,et al.Stabilization and solidification of lead in contaminated soils[J].Journal of Hazardous Materials,1996,48:95-110.
  • 8Poellmann H,Kuzel Sta,Kuzel H J,et al.Solid solution in ettringite.partⅡ: Incorporation of B(OH)-4 and Cr2O2-4 in CaO·Al2O3·3CaSO4·32H2O[J].Cement and Concrete Research, 1993, 23(2): 422-430.
  • 9Klemm W A,Bhatty J I.Fixation of Heavy Metals as Oxyanion-Substituted Ettringites[M].Skokie,IL,USA:Portland Cement Association,2002: 9-10.
  • 10Jacobsen S D,Smyth J R,Swope R J.Thermal expansion of hydrated six-coordinate silicon in thaumasite, Ca3Si(OH)6(CO3)(SO4)·12H2O[J].Phys Chem Minerals,2003,(30): 321-329.

共引文献14

同被引文献42

  • 1ZHAOHuazhang,GExiaopeng,LUANZhaokun,JIANGZhanpeng.Effects of Ca on the distribu-tion, structure and morphol-ogy of aluminum species in polyaluminum chloride[J].Chinese Science Bulletin,2004,49(12):1241-1244. 被引量:2
  • 2陈后兴,罗仙平,刘立良.含氟废水处理研究进展[J].四川有色金属,2006(1):31-35. 被引量:31
  • 3章兴华,周丽芸.一种生产弗雷德盐的方法:中国,201110048719.9[P].2011-03-02.
  • 4Zhang M ,Reardon E J. Removal of B,Cr,Mo ,and Se from wastewater by incorporation into hydrocalumite and ettfingite [J].Environ.Sci. Technol., 2003,37 ( 13 ) : 2947-2952.
  • 5Kirkpatrick R J.Molecular modeling of the vibrational spectra of in- terlayer and surface species of layered double hydroxides.In :The Application of Vibrational Spectroscopy to Clay Minerals and Layered Double Hydroxides [ C ]//CMS Workshop Lectures.Kloprogge J T, ed.The Clay Mineral Society, Aurora, CO., 2005,13 : 239-285.
  • 6Zhang D.Removal of arsenic from water by Friedel's salt (FS: 3CaO. A1203"CaC12" 10H20) [J] J.Hazard.Mater. ,2011,195:398-404.
  • 7Dai Y,Qian G, C ao Y, et al.Effective removal and fixation of Cr ( VI ) from aqueous solution with Friedel's salt [J ].J.Hazard.Mater., 2009, 170 : 1086-1092.
  • 8Wu Y,Chi Y, Bai H.Effective removal of selenate from aqueous solu- tions by the Friedel phase [ J ].J.Hazard.Mater., 2010,176:193-198.
  • 9Ma J, Li Z ,Zhang Y.Desilication of sodium aluminate solution by Friedel's salt (FS: 3CaO.A 1203" CaC12.10H20) [J ]. Hydrometallurgy, 2009.99,225-230.
  • 10章兴华,陆洋,刘世荣.等.一种用弗雷德盐去除水体中重金属锑的方法:中国,103265129[P].2013-08-28.

引证文献3

二级引证文献8

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