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Preparative Parameter Effects on Synthesis of Birnessite by O2 Oxidation

Preparative Parameter Effects on Synthesis of Birnessite by O2 Oxidation

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【Author】 FENG Xiong-Han, ZU Yan-Qun, TAN Wen-Feng and LIU Fan1 Key Laboratory of Subtropical Soil Resources and Environment, Chinese Agricultural Ministry, Huazhong Agricultural University, Wuhan 430070 (China). E-mail: fxh73@mail.hzau.edu.cn2 College of Resources and Environment, Yunnan Agricultural University, Yunnan 650201 (China)

【摘要】 <正> Birnessite occurs in a wide variety of natural environments, and plays an important role in soil chemistry. A modified Stahli procedure was used to synthesize sodium birnessite in an alkali medium by O2 oxidation. The effects of preparative parameters on the synthesis of birnessite, such as pretreatment on solutions with N2, reaction temperature, O2, flow rate, fluxion velocity of the reaction suspension, and dehydration conditions were investigated. The fluxion velocity of the reactive suspension and O2 flow rate significantly influenced the synthesis of birnessite. Vigorous stirring raised the fluxion velocity of the reaction suspension and easily allowed synthesis of pure crystalline birnessite. However pretreatment of the reacting solutions with N2 and

【Abstract】 Birnessite occurs in a wide variety of natural environments, and plays an important role in soil chemistry. A modified Stahli procedure was used to synthesize sodium birnessite in an alkali medium by O2 oxidation. The effects of preparative parameters on the synthesis of birnessite, such as pretreatment on solutions with N2, reaction temperature, O2, flow rate, fluxion velocity of the reaction suspension, and dehydration conditions were investigated. The fluxion velocity of the reactive suspension and O2 flow rate significantly influenced the synthesis of birnessite. Vigorous stirring raised the fluxion velocity of the reaction suspension and easily allowed synthesis of pure crystalline birnessite. However pretreatment of the reacting solutions with N2 and the reaction temperature had little effect on the synthesis. Diffusion of O2 was the controlling step during the course of oxidation. The optimum synthetic conditions for pure birnessite were: a NaOH to Mn molar ratio of 13.7, an O2 flow rate of 2 L min-1, and oxidation for 5 hours with vigorous stirring at normal temperatures. The chemical composition of the synthesized pure birnessite was Nao.25MnO2.07.0.66H2O.

【基金】 Project supported by the National Natural Science Foundation of China (Nos. 40101017 and 40071048) ; the Senior Visitor Foundation of Chinese Educational Ministry.
  • 【文献出处】 Pedosphere ,土壤圈(英文版) , 编辑部邮箱 ,2004年01期
  • 【分类号】S153
  • 【被引频次】4
  • 【下载频次】29
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