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铝热剂SHS合成污染土壤固化产物中模拟核素的分布 被引量:1

Distributing Characteristic of Simulated Nuclide in Contaminated Soil Forming Immobilization with Thermit by Self-Propagating High Temperature Synthesis
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摘要 以稀土元素Ce,Er和碱土金属元素Sr作为模拟核素,通过合金固溶度理论分析,并借助于ICP/MS,X射线荧光光谱分析、X射线衍射分析和PCT浸出法等分析手段,研究了对采用铝热剂自蔓延高温合成污染土壤固化产物中模拟核素的分布情况、固化体的物相组成和化学稳定性。结果表明,在SHS高温合成条件下,模拟核素在铁中的含量均在1×10-6数量级以上;示踪核素Ce主要是以CeAl11O18和Ce2SiO5的矿物晶体的形态存在于固化产物中,固化体中模拟核素的28 d平均浸出速率为1×10-5~1×10-6g.m-.2d-1,比一般硼硅酸盐玻璃固化体中稀土元素的浸出速率低1~2个量级;固化体中Ca,Si和Al的28 d浸出速率约为1×10-3g.m-.2d-1,Fe约为1×10-4g.m-.2d-1。放射性核素被固结在固化体中,而不进入到铁中,有利于后续固化体处理的安全性。 Using lanthanide Ce,Er and alkaline earth metals Sr as simulated nuclides,the distributing characteristic of simulated nuclides,phase compositions and chemical durability of contaminated soil were tested by the theory on solid solubility,X-ray diffraction,X-ray fluorescence analysis,ICP-MS and the leaching method.The results showed that in the self-propagating high-temperature synthesis condition,the content at 1×10-6 order of magnitude in Fe,the simulated nuclide Ce mainly formed crystalline phase CeAl11O18 and Ce2SiO5.The normalized release rate of simulated nuclides during 28 d was 1×10-5~1×10-6 g · m-2 · d-1,which was much lower than the borosilicate glass solid form.The normalized release rate of Ca,Si and Al during 28 d was 1×10-3 g · m-2 · d-1,and that of Fe was 1×10-4 g · m-2 · d-1.Radionuclide was solidified in condense but not into Fe,insure safely dispose high-level radioactive waste.
出处 《稀有金属》 EI CAS CSCD 北大核心 2012年第2期316-320,共5页 Chinese Journal of Rare Metals
基金 国家自然科学基金(10476015 91126013)资助项目
关键词 铝热剂 核废物 稀土元素 自蔓延高温合成 固化 thermit radioactive waste lanthanide self-propagating high temperature synthesis immobilization
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  • 1袁涛,王晓宇,栗再新,陈志.核废物处理途径的探讨[J].科学技术与工程,2004,4(10):861-867. 被引量:13
  • 2张瑞珠,郭志猛,贾成厂,卢广峰,张华.自蔓延高温合成钙钛矿型人造岩石固化体[J].北京科技大学学报,2004,26(5):485-488. 被引量:14
  • 3张瑞珠,郭志猛,高峰.用SHS将核废物固定于类矿石[J].稀有金属,2005,29(1):25-29. 被引量:10
  • 4罗上庚.高放废物的分离与嬗变[J].辐射防护,1996,16(1):72-75. 被引量:7
  • 5中国科学院贵阳地球化学研究所.简明地球化学手册[M].北京:科学出版社,1977.331-331.
  • 6汤宝龙(译) 考夫曼B.西德商用后处理高放废物固化物的评价.核燃料循环中放射性废物的处理和处置[M].北京:原子能出版社,1981.219-227.
  • 7汤宝龙(译) 考夫曼B.高放废物玻璃固化体的研制和辐照稳定性.核燃料循环中放射性废物的处理和处置[M].北京:原子能出版社,1981.209-218.
  • 8Ylva Uggla. Risk and safetyanaly sis in long-term perspective [J]. Futures, 2004, (36) : 549.
  • 9Hamdi EI-Ghonemy, Len Watts, Linda Fowler. Treatment of uncertainty and developing conceptual models for environmental risk assessments and radioactive waste disposal safety cases[J]. Environment International, 2005, 31(1): 89.
  • 10Broden K, Olsson G. Fir, al disposal possibilities of radioactive waste components from ITER[J]. Fusion Engineering and Design, 2003, 69(4): 695.

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  • 1BOROVINSKAYA I P, BARINOVA T V, RATNIKOV F, et al. Selbpropagating high- temperature synthesis for immobilization of high- level waste in mineral-like ceramics[J]. Radio- chemistry, 2008, 50(3): 316-320.
  • 2GLAGOVSKII E M, YUDINTSEV S V, KU- PRIN A V. Crystalline host phases for actinides, obtained by self-propagating high-temperature synthesis[J]. Radionehemistry, 2001, 43 (6) : 557-562.
  • 3KARLINA O K, VARLAKOVA G A, OZHOVAN M I, et al. Conditioning of radioactive ash resi- due in a wave of solid-phase exothermal reactions [J]. Atomic Energy, 2001, 90(1): 43-48.
  • 4OJOVAN M I, LEE W E. Self sustaining vitrifi- cation for immobilization of radioactive and toxic waste[J]. Glass Teehno, 2003, 44(6): 218-224.
  • 5VINOKUROV S E, KULYAKO Y M. Immobi- lization of actinides in pyrochlore-type matrices produced by self-proagating high-temperature synthesis[J]. Comptes Rendus Chimie, 2007, 10:1 128-1 130.
  • 6GLAGOVSKII E M, YUDINTSEV S V, KUPRIN A V, et al. Crystalline host phases for actinides, obtained by self-propagating high-temperature synthesis [J]. Radiochemistry, 2001, 43 (6): 632-638.
  • 7OJOVAN M I, LEE W E, SOBOLEV I A, et al. Thermochemical processing using powder metal fuels of radioactive and hazardous waste [J]. Process Mechanical Engineering, 2004, 218 : 1-9.
  • 8GLAGOVSKY E M, KOUPRINE A V, PELE- VINE L P. Study of matrices synthesized by a self-propagating high-temperature synthesis[J]. Journal of Physics, 2003, 5a(Suppl. A): 657- 663.
  • 9IAEA. Application of thermal technologies for processing of radioactive waste, IAEA-TEC- DOC-1527[R]. Vienna:IAEA, 2006.
  • 10MUNIR Z A. Self-propagation exothermic reac- tion: The synthesis of high-temperatuer materials by combustion [J]. Materials Science Reports, 1989, 32(3): 277-365.

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