Zirconolite transformation under reducing conditions

被引:28
作者
Begg, BD
Vance, ER
Hunter, BA
Hanna, JV
机构
[1] Australian Nucl Sci & Technol Org, Menai, NSW 2234, Australia
[2] CSIRO, N Ryde NMR Facil, Menai, NSW 2234, Australia
关键词
D O I
10.1557/JMR.1998.0432
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The structural behavior of zirconolite (CaZrTi2O7) under reducing conditions at high temperature has been studied, mainly by scanning electron microscopy (SEM) and x-ray diffraction (XRD), but also with x-ray absorption spectroscopy, thermogravimetry, and electron paramagnetic resonance. The partial reduction of Ti4+ to Ti3+, associated with a reducing atmosphere heat treatment, led to the initial formation of perovskite (CaTiO3) as a second phase. As the concentration of Ti3+ in the zirconolite increased, so did the amount of perovskite until the zirconolite was totally transformed into a fluorite structured phase. Analysis of the reduced zirconolites showed them to be consistently deficient in Ca and enriched in Zr, in proportion to the concentration of Ti3+. To determine how electroneutrality was preserved in these reduced zirconolites, a series of zirconolites were prepared in air using In3+ and Ga3+ as models for Ti3+. These samples were then investigated by neutron and x-ray diffraction, SEM, solid state nuclear magnetic resonance (NMR), and nuclear quadrupole resonance (NQR). Ga-71 MAS NMR studies of the Ga substituted zirconolite exhibited a narrow resonance at similar to 13 ppm which was attributed to six-coordinate Ga incorporated in a trace perovskite phase. Broadline 71Ga NMR and Ga-69/71 NQR were required to characterize the Ga incorporated in the zirconolite, The resultant quadrupolar parameters of C-Q = 30.0 +/- 0.05 MHz and eta = 1.0 +/- 0.03 indicate that the Ga site is in a highly distorted environment which would suggest that it is located on the five-coordinate Ti site within the zirconolite lattice. These results were complemented by Rietveld refinement of the neutron diffraction data from the In-doped zirconolite sample, which was optimal when all the In was located on the five-coordinate Ti site with the excess Zr located on the Ca site. It would therefore appear that charge compensation for the presence of Ti3+ in zirconolite is effected via the substitution of an appropriate amount of Zr on the Ca site. The Ti3+-stabilized fluorite structure was readily oxidized back to a single phase zirconolite upon heating in air.
引用
收藏
页码:3181 / 3190
页数:10
相关论文
共 13 条
[1]  
ANTUFEV VV, 1962, FIZ TVERD TELA, V4, P1496
[2]  
Bancroft G. M., 1972, ADV INORG CHEM RAD, V15, P59
[3]   Zr-91 NMR characterisation of phases in transformation toughened zirconia [J].
Bastow, T. J. ;
Smith, M. E. .
SOLID STATE NUCLEAR MAGNETIC RESONANCE, 1992, 1 (04) :165-174
[4]   OBSERVATION OF ZR-91 NMR IN ZIRCONIUM-BASED METALS AND OXIDES [J].
BASTOW, TJ ;
SMITH, ME ;
STUART, SN .
CHEMICAL PHYSICS LETTERS, 1992, 191 (1-2) :125-129
[5]   ZIRCONOLITE, CAZRXTI3-XO7 - STRUCTURE REFINEMENTS FOR NEAR-END-MEMBER COMPOSITIONS WITH X = 0.85 AND 1.30 [J].
GATEHOUSE, BM ;
GREY, IE ;
HILL, RJ ;
ROSSELL, HJ .
ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE, 1981, 37 (FEB) :306-312
[6]   SOLID-STATE SPIN-ECHO FOURIER-TRANSFORM NMR OF K-39 AND ZN-67 SALTS AT HIGH-FIELD [J].
KUNWAR, AC ;
TURNER, GL ;
OLDFIELD, E .
JOURNAL OF MAGNETIC RESONANCE, 1986, 69 (01) :124-127
[7]   HIGH-RESOLUTION AL-27 NMR OF ALUMINOSILICATES [J].
LIPPMAA, E ;
SAMOSON, A ;
MAGI, M .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1986, 108 (08) :1730-1735
[8]  
LUCKEN EAC, 1994, Z NATURFORSCH A, V49, P155
[9]  
Ringwood A.E., 1988, RADIOACTIVE WASTE FO
[10]   IMMOBILIZATION OF HIGH-LEVEL NUCLEAR-REACTOR WASTES IN SYNROC [J].
RINGWOOD, AE ;
KESSON, SE ;
WARE, NG ;
HIBBERSON, W ;
MAJOR, A .
NATURE, 1979, 278 (5701) :219-223