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铁锰复合氧化物吸附作用研究进展 被引量:7

Progress on the Adsorption Effect by Fe-Mn Binary Oxide
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摘要 在水污染修复技术中,吸附法因操作简单、成本低,被认为是最有前途的除污技术。铁锰氧化物由于其较高的比表面积和较强的吸附能力,是一种较好的吸附剂,已经广泛应用到对污染物的吸附处理过程。本文重点综述了铁锰复合氧化物对砷、重金属及磷酸盐等污染物的吸附作用研究进展,系统分析了不同因素对铁锰复合氧化物吸附性能的影响。综合分析发现,铁锰复合氧化物在污染物修复中展现出广阔的应用前景。 In water pollution repairing technology, adsorption method is considered to be the most promising decontamination technology due to its characters of simple operation and low cost. As its higher specific surface area and stronger adsorption ability, iron and manganese oxide can be used as good adsorbents, and it has been widely applied to the adsorption process of pollutants. In this paper, research progress on the adsorption effect on arsenic, heavy metals and phosphate by Fe-Mn binary oxide was summarized. Also, the influence factors to the adsorption process were analyzed. Comprehensive analysis found that Fe-Mn binary oxide shows wide application prospects in contamination remediation.
出处 《矿物学报》 CAS CSCD 北大核心 2015年第3期288-292,共5页 Acta Mineralogica Sinica
基金 国家自然科学基金项目(批准号:41201228 41340028 41172160) 临沂大学一般项目(编号:4613023) 国家级大学生创新创业训练计划项目(编号:201310452044)
关键词 铁锰复合氧化物 吸附 重金属 污染修复 Fe-Mn binary oxide absorption heavy metal contamination remediation
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参考文献48

  • 1Roy R.Evaluation of arsenic pollution and its impact on human life in bhopal and adjoining districts of Madhya Pradesh[J].J Environ Res Dev,2009,3(3):873-878.
  • 2Hong H J,Farooq W,Yang J S,Yang J W.Preparation and evaluation of Fe-Al binary oxide for arsenic removal:Comparative study with single metal oxides[J].Separation Science and Technology,2010,45:1975-1981.
  • 3Choong T S Y,Chuah T G,Robiah Y,Gregory Koay F L,Azni I.Arsenic toxicity,health hazards and removal techniques from water:an overview[J].Desalination,2007,217:139-166.
  • 4Chen T C,Huang G H,Liu C H,Chen C S,Chuang S H,Huang Y H.Novel effective waste iron oxide-coated magnetic adsorbent for phosphate adsorption[J].Desalination and Water Treatment,2014,52:766-774.
  • 5Zhang G S,Liu H J,Ruiping Liu,Qu J H.Removal of phosphate from water by a Fe-Mn binary oxide adsorbent[J].Journal of Colloid and Interface Science,2009,335(2):168-174.
  • 6Lu J B,Liu H J,Zhao X,Jefferson W,Cheng F,Qu J H.Phosphate removal from water using freshly formed Fe-Mn binary oxide:Adsorption behaviors and mechanisms[J].Colloids and Surfaces A:Physicochemical and Engineering Aspects,2014,455:11-18.
  • 7Zhang G,Khorshed A,Chen J P.Simultaneous removal of arsenate and arsenite by a nanostructured zirconium-manganese binary hydrous oxide:Behavior and mechanism[J].Journal of Colloid and Interface Scienc,2012,397:137-143.
  • 8Wu K,Liu T,Ma C,Chang B,Chen R,Wang X C.The role of Mn oxide doping in phosphate removal by Al-based bimetal oxides:adsorption behaviors and mechanisms[J].Environ Sci Pollut Res,2014,21:620-630.
  • 9Chan Y T,Kuan W H,Chen T Y,Wang M K.Adsorption mechanism of selenate and selenite on the binary oxide systems[J].Water Res,2009,43:4412-4420.
  • 10Dhoble R M,Lunge S,Bhole A G,Rayalu S.Magnetic binary oxide particles(MBOP):A promising adsorbent for removal of As(III)in water[J].Water Res,2011,45:4769-781.

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