Flotation of MnO4 and Fe3+ ions by the combined use of sodium silicate and cationic surfactant.
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概要
- 論文の詳細を見る
The removals of MnO<SUB>4</SUB><SUP>−</SUP> and Fe<SUP>3+</SUP> ions from an aqueous solution by the combined use of silicate ions(SiO<SUB>3</SUB><SUP>2−</SUP>) and a cationic surfactant, hexadecyltrimethylammonium chloride (HTAC), were studied by means of ion flotation techniques. The effect of variables such as pH, the surfactant concentration, and the order of addition of the reagents on the floatability of the ions were studied. More than 98 and 97% of the MnO<SUB>4</SUB><SUP>−</SUP> and Fe<SUP>3+</SUP> ions, respectively, could be floated under the optimum conditions. The optimum composition of SiO<SUB>3</SUB><SUP>2−</SUP> and HTAC was found to be about 0.9 in mole fraction of SiO<SUB>3</SUB><SUP>2−</SUP> for both systems. It was also found that the order of the addition of the reagents markedly affects the floatability. Further, a schematic model of flotation was proposed, taking account of the compositions of the sublate. MnO<SUB>4</SUB><SUP>−</SUP> and Fe<SUP>3+</SUP> ion flotations differed from each other in that MnO<SUB>4</SUB><SUP>−</SUP> ions combine with SiO<SUB>3</SUB><SUP>2−</SUP> ions through the double layer of HTAC molecules, which are subsequently coagulated and floated by HTAC, while Fe<SUP>3+</SUP> ions or polynuclear Fe<SUP>3+</SUP> ions combine directly with SiO<SUB>3</SUB><SUP>2−</SUP> ions, which are subsequently coagulated and floated by HTAC.
- 公益社団法人 日本化学会の論文
著者
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Kobayashi Koichi
Department Of Anesthesiology And Resuscitology Shinshu University School Of Medicine
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Sasaki Tsunetaka
Department of Chemistry Faculty of Science Tokyo Metropolitan University
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Takayanagi Isao
Department of Chemistry, Faculty of Science, Tokyo Metropolitan University
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Hachisuka Keiko
Department of Chemistry, Faculty of Science, Tokyo Metropolitan University
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