SELF-IRRADIATION DAMAGE OF A CURIUM-DOPED TITANATE CERAMIC CONTAINING SODIUM-RICH HIGH-LEVEL NUCLEAR WASTE

被引:10
作者
MITAMURA, H
MATSUMOTO, S
MIYAZAKI, T
WHITE, TJ
NUKAGA, K
TOGASHI, Y
SAGAWA, T
TASHIRO, S
LEVINS, DM
KIKUCHI, A
机构
[1] CHIYODA MAINTENANCE LTD,IBARAKI CTR,DEPT NUCL BUSINESS 2,ASAKI,IBARAKI 31414,JAPAN
[2] UNIV QUEENSLAND,CTR ELECTRON MICROSCOPE,ST LUCIA,QLD 4067,AUSTRALIA
[3] AUSTRALIAN NUCL SCI & TECHNOL ORG,LUCAS HTS RES LABS,ENVIRONM SCI PROGRAM,SUTHERLAND,NSW,AUSTRALIA
关键词
curium; damage; irradiation; titanates; wastes;
D O I
10.1111/j.1151-2916.1990.tb06472.x
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The polyphase titanate ceramic containing sodium‐rich simulated high‐level nuclear waste was doped with 0.69 wt% of 244Cm to accelerate long‐term self‐irradiation due to α decays. α autoradiography showed that α emissions were almost uniformaly distributed throughout the curium‐doped samples on a >20‐μm scale although micropore surfaces and titanium oxide agglomerates were free of α‐emitting nuclides. The phase assemblage of the curium‐doped titanate ceramic included freudenbergite and loveringite in addition to the more abundant oxide phases: hollandite, perovskite, and zirconolite. Accumulation of α decays was accompanied by a gradual decrease in density. The increment of density was – 1% after an equivalent age of 5000 yr. Leach tests showed a slight trend toward higher total release of curium with equivalent age. The release of soluble nonradioactive elements (e.g., Na, Cs, Sr, and Ca) in the oldest specimens (equivalent age, 2000 yr) varied from specimen to specimen but, on average, were higher than specimens that had suffered a lower radiation dose. Copyright © 1990, Wiley Blackwell. All rights reserved
引用
收藏
页码:3433 / 3441
页数:9
相关论文
共 22 条
[1]  
BANBA T, 1982, JAERIM82088 JAP AT E
[2]   EFFECTS OF RADIATION ON THE LEACH RATES OF VITRIFIED RADIOACTIVE-WASTE [J].
BURNS, WG ;
HUGHES, AE ;
MARPLES, JAC ;
NELSON, RS ;
STONEHAM, AM .
JOURNAL OF NUCLEAR MATERIALS, 1982, 107 (2-3) :245-270
[3]   TITANATE CERAMICS FOR THE IMMOBILIZATION OF SODIUM-BEARING HIGH-LEVEL NUCLEAR WASTE [J].
BUYKX, WJ ;
HAWKINS, K ;
LEVINS, DM ;
MITAMURA, H ;
SMART, RS ;
STEVENS, GT ;
WATSON, KG ;
WEEDON, D ;
WHITE, TJ .
JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 1988, 71 (08) :678-688
[4]  
BYRNE GD, 1977, COMPUT CHEM ENG, V1, P133, DOI 10.1016/0098-1354(77)80018-5
[5]   NUCLEAR-TRACK-RECORDING POLYMER OF UNIQUE SENSITIVITY AND RESOLUTION [J].
CARTWRIGHT, BG ;
SHIRK, EK ;
PRICE, PB .
NUCLEAR INSTRUMENTS & METHODS, 1978, 153 (2-3) :457-460
[6]  
Fielding P. E., 1987, Journal of Materials Research, V2, P387, DOI 10.1557/JMR.1987.0387
[7]  
LEVINS DM, 1987, P INT TOPICAL M WAST, P1137
[9]   SMALL CALCINER FOR DRYING AND CALCINATION OF SYNROC SLURRY [J].
MITAMURA, H ;
MURAKAMI, T ;
BANBA, T ;
AMAYA, T .
NUCLEAR TECHNOLOGY, 1986, 73 (03) :384-388
[10]   FABRICATION OF CURIUM-DOPED SYNROC FOR AN ALPHA-RADIATION STABILITY TEST [J].
MITAMURA, H ;
MATSUMOTO, S ;
BUYKX, WJ ;
TASHIRO, S .
NUCLEAR TECHNOLOGY, 1989, 85 (01) :109-117