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首页> 外文期刊>European journal of mineralogy >Polysomatism and structural complexity: structure model for murataite-8C, a complex crystalline matrix for the immobilization of high-level radioactive waste
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Polysomatism and structural complexity: structure model for murataite-8C, a complex crystalline matrix for the immobilization of high-level radioactive waste

机译:多晶质和结构复杂性:murataite-8C的结构模型,Murataite-8C是用于固定高放废物的复杂晶体基质

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Murataite-8C, a prospective synthetic material for the long-term immobilization of high-level radioactive waste and a member of the pyrochlore-murataite polysomatic series, was investigated by means of single-crystal X-ray diffraction. The crystal structure (cubic, F-43m, a = 39.105(12) angstrom(3), V = 59799(32) angstrom(3), Z = 4) is of outstanding complexity and contains forty symmetrically independent cation sites. Its crystal-chemical formula determined on the basis of the crystal-structure refinement, Al25.44Ca55.96Ti282.20Mn53.72Fe17.24Zr15.00Ho36.64O823, is in good agreement with the empirical formula calculated from electronmicroprobe data, Al23.02Ca52.85Ti284.10Mn54.31Fe17.59Zr14.83Ho38.04O823. The crystal structure is based upon a three-dimensional octahedral framework that can be described as an alternation of murataite and pyrochlore modules immersed into a transitional substructure that combine elements of the crystal structures of murataite-3C and pyrochlore. The obtained structural model confirms the polysomatic nature of the pyrochlore-murataite series and illuminates the chemical and structural peculiarities of crystallization of the murataite-type titanate ceramic matrices. The high chemical and structural complexity of the members of the pyrochlore- murataite series is unparalleled in the world of crystalline materials proposed for the high-level radioactive waste immobilization, which makes it unique and promising for further technological and scientific exploration.
机译:通过单晶X射线衍射研究了Murataite-8C,它是一种用于长期固定高放废物的潜在合成材料,也是烧绿石-蒙脱石多体系列的成员。晶体结构(立方晶体,F-43m,a = 39.105(12)埃(3),V = 59799(32)埃(3),Z = 4)具有出色的复杂性,并包含40个对称的独立阳离子位点。根据晶体结构细化确定的晶体化学公式Al25.44Ca55.96Ti282.20Mn53.72Fe17.24Zr15.00Ho36.64O823与根据电子探针数据计算得出的经验公式Al23.02Ca52.85Ti284非常吻合0.10Mn54.31Fe17.59Zr14.83Ho38.04O823。晶体结构基于三维八面体框架,该三维八面体框架可描述为浸没在过渡亚结构中的murataite和烧绿石组件的交替,该过渡子结构结合了murataite-3C和pyrochlore的晶体结构。所获得的结构模型证实了烧绿石-蒙脱石系列的多体性质,并阐明了蒙脱石型钛酸盐陶瓷基体结晶的化学和结构特性。在用于高放废物固定化的结晶材料领域,焦绿石-蒙脱石系列成员的高化学和结构复杂性是无与伦比的,这使其成为独特的材料,并有望用于进一步的技术和科学探索。

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