The synthesis and phosphate adsorptive properties of Mg(II)-Mn(III) layered double hydroxides and their heat-treated materials

被引:43
作者
Tezuka, S
Chitrakar, R
Sakane, K
Sonoda, A
Ooi, K
Tomida, T
机构
[1] Univ Tokushima, Tokushima 7700814, Japan
[2] Natl Inst AIST, Inst Marine Resources & Environm, Takamatsu, Kagawa 7610395, Japan
关键词
D O I
10.1246/bcsj.77.2101
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Hydrotalcite-like layered double hydroxides (LDHs) of Mg(II) and Mn(III) were prepared by a co-precipitation/air oxidation method using MgCl2 and MnCl2 as starting materials. Syntheses were studied at different precipitation temperatures and variable starting Mg/Mn ratios. MgMn-LDH were obtained at a preparation temperature below 333 K. Samples prepared at a Mg/Mn ratio of 3 showed a crystalline LDH phase having a basal spacing of 7.85 Angstrom. The LDH prepared at lower Mg/Mn ratios had slightly less crystalline phase, with lower basal spacing. Calcination of MgMn-LDH at 573 K for 4 h in air resulted in a transformation from a layered to an amorphous phase, accompanied by a loss of interlayer water and a partial loss of carbonate ions. Chemical analysis and IR studies showed that oxidation from Mn(III) to Mn(IV) progressed during the calcinations, and that HCO3- was formed in the calcined solid. Equilibrium distribution coefficients (K-d) of different kinds of anions were measured for the uncalcined and calcined samples. The selectivity sequences were Cl- < NO3- < SO42- < HPO42- and Cl-, NO3-, SO42- much less than HPO42- for the uncalcined and calcined ones, respectively. The latter had specific selectivity for phosphate ions. The calcined sample showed a maximum phosphate uptake of 1.1 mmol-P/g at a pH around of 8. The pH titration study of the supernatant solution suggested that the phosphate adsorption progresses mainly through the HCO3-/HPO42- ion exchange reaction.
引用
收藏
页码:2101 / 2107
页数:7
相关论文
共 30 条
[11]  
DUNN PJ, 1979, AM MINERAL, V64, P127
[12]   PREPARATION AND THERMAL-STABILITY OF MANGANESE-CONTAINING HYDROTALCITE, [MG0.75MN(II)0.04MN(III)0.21(OH)2] (CO3)0.11.NH2O [J].
FERNANDEZ, JM ;
BARRIGA, C ;
ULIBARRI, MA ;
LABAJOS, FM ;
RIVES, V .
JOURNAL OF MATERIALS CHEMISTRY, 1994, 4 (07) :1117-1121
[13]   FORMATION OF SYNTHETIC ANALOGS OF DOUBLE METAL-HYDROXY CARBONATE MINERALS UNDER CONTROLLED PH CONDITIONS .2. THE SYNTHESIS OF DESAUTELSITE [J].
HANSEN, HCB ;
TAYLOR, RM .
CLAY MINERALS, 1991, 26 (04) :507-525
[14]  
*JIS, 1982, M8233 MIS
[15]  
Kawamoto A., 2003, J SOC INORG MAT JPN, V10, P167
[17]   PHYSICO CHEMICAL PROPERTIES AND STRUCTURE OF MAGNESIA-ALUMINA [J].
MIYATA, S ;
KUMURA, T ;
HATTORI, H ;
TANABE, K .
NIPPON KAGAKU ZASSHI, 1971, 92 (06) :514-&
[18]  
Nyquist R.A., 1971, Handbook of Infrared and Raman Spectra of Inorganic Compounds and Organic Salts: Infrared Spectra of Inorganic Compounds, VVolume 4
[19]   Simultaneous uptake of ammonium and phosphate ions by composites of γ-alumina/potassium aluminosilicate gel [J].
Okada, K ;
Temuujin, J ;
Kameshima, Y ;
MacKenzie, KJD .
MATERIALS RESEARCH BULLETIN, 2003, 38 (05) :749-756
[20]   PREPARATION AND PHOSPHATE ION-EXCHANGE PROPERTIES OF A HYDROTALCITE-LIKE COMPOUND [J].
OOKUBO, A ;
OOI, K ;
HAYASHI, H .
LANGMUIR, 1993, 9 (05) :1418-1422