Crystalline alpha-titanium(IV) hydrogenphosphate and its sodium- and n-butylammonium-intercalated forms: ion exchange and thermochemistry

被引:25
作者
Roca, S [1 ]
Airoldi, C [1 ]
机构
[1] UNIV ESTADUAL CAMPINAS,INST QUIM,BR-13083970 CAMPINAS,SP,BRAZIL
来源
JOURNAL OF THE CHEMICAL SOCIETY-DALTON TRANSACTIONS | 1997年 / 14期
关键词
D O I
10.1039/a701590i
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Crystalline alpha-titanium(IV) hydrogenphosphate and its sodium- and n-butylammonium-intercalated forms were used as exchangers with MX2 (M = Zn or Cu; X = Cl, NO, or MeCO2) in aqueous medium at 298.2 +/- 0.2 K. An enhancement of the exchange capacity was observed for alpha-Ti(HPO4)(2) and its sodium form when acetate was used as the counter ion for both zinc and copper cation solutions. Thermodynamic determinations for all ion-exchange processes were performed by titrating calorimetrically a suspension of a given exchanger in water (2.0 cm(3)) with an aqueous cation solution in a heat-flow microcalorimeter at 298.15 +/- 0.01 K. In all cases the net thermal effects were calculated after subtracting the corresponding dilution thermal effects. With the exception of exothermic ion-exchange processes involving CuCl2 with the alpha-Ti(HPO4)(2) and sodium forms, and Zn(NO3)(3) with alpha-Ti(HPO4)(2), which gave -2.40 +/- 0.12, -1.01 +/- 0.01 and -12.26 +/- 0.15 kJ mol(-1), respectively, all other exchange processes were endothermic in nature with low enthalpy values, varying from 0.010 +/- 0.001 to 8.59 +/- 0.14 kJ mol(-1) for the Zn(NO3)(2) and Zn(O2CMe)(2) systems, with the sodium form. The number of moles exchanged did not correlate with the corresponding enthalpies. However, the thermodynamic data are in agreement with the occurrence of a spontaneous and entropically favourable ion-exchange process for all systems considered.
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页码:2517 / 2523
页数:7
相关论文
共 72 条
[1]   SYNTHETIC INORGANIC ION-EXCHANGE MATERIALS .22. DISTRIBUTION COEFFICIENTS AND POSSIBLE SEPARATION OF TRANSITION-METALS ON CRYSTALLINE ANTIMONIC(V) ACID AS A CATION-EXCHANGER [J].
ABE, M ;
KASAI, K .
SEPARATION SCIENCE AND TECHNOLOGY, 1979, 14 (10) :895-907
[2]  
AHRLAND S, 1972, J INORG NUCL CHEM, V32, P2069
[3]   Calorimetric study of intercalation of n-alkyldiamines into alpha-titanium hydrogenphosphate [J].
Airoldi, C ;
Roca, S .
JOURNAL OF MATERIALS CHEMISTRY, 1996, 6 (12) :1963-1966
[4]   ON THE THERMOCHEMISTRY OF INTERCALATION OF N-ALKYLAMINES INTO ALPHA-TITANIUM HYDROGENPHOSPHATE [J].
AIROLDI, C ;
DEOLIVEIRA, SF .
STRUCTURAL CHEMISTRY, 1991, 2 (01) :41-46
[5]   SYNTHESIS, CHARACTERIZATION, CHEMISORPTION AND THERMODYNAMIC DATA OF UREA IMMOBILIZED ON SILICA [J].
AIROLDI, C ;
SANTOS, MRMC .
JOURNAL OF MATERIALS CHEMISTRY, 1994, 4 (09) :1479-1485
[6]   CHEMISORPTION OF DIVALENT-CATIONS ON N-(2-PYRIDYL)ACETAMIDE IMMOBILIZED ON SILICA-GEL - A THERMODYNAMIC STUDY [J].
AIROLDI, C ;
ALCANTARA, EFC .
JOURNAL OF CHEMICAL THERMODYNAMICS, 1995, 27 (06) :623-632
[7]   SOME FEATURES OF THE THERMOCHEMISTRY OF COORDINATION-COMPOUNDS [J].
AIROLDI, C ;
CHAGAS, AP .
COORDINATION CHEMISTRY REVIEWS, 1992, 119 :29-65
[8]   IMMOBILIZED 3-AMINOPYRIDINE ON SILICA - ADSORPTION OF SOME METAL(II) CHLORIDES IN NON-AQUEOUS SOLUTIONS [J].
AIROLDI, C ;
GONCALVES, AS .
COLLOIDS AND SURFACES, 1987, 28 (2-4) :199-208
[9]  
AIROLDI C, IN PRESS CLAYS CLAY
[10]  
AIROLDI C, 1992, J BRAZIL CHEM SOC, V3, P47