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Crystallographic evaluation of sodium zirconium phosphate as a host structure for immobilization of cesium

机译:磷酸锆钠作为固定化铯的主体结构的晶体学评估

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摘要

Sodium zirconium phosphate (NZP) is a potential material for immobilization of nuclear effluents. The existence of cesium containing NZP structure was determined on the basis of crystal data of solid solution. It was found that up to ~9.0 wt% of cesium could be loaded into NZP formulations without significant changes of the three-dimensional framework structure. The crystal chemistry of Na_(1-x) Cs _x Zr_2P_3O_(12) (x = 0.1-0.4) has been investigated using General Structure Analysis System programming. The CsNZP phases crystallize in the space group R-3c and Z = 6. Powder diffraction data have been subjected to Rietveld refinement to arrive at a satisfactory structural convergence of R-factors. The unit cell volume and polyhedral (ZrO_6 and PO_4) distortion increase with rise in the mole% of Cs~+ in the NZP matrix. The PO_4 stretching and bending vibrations in the infrared region have been assigned. SEM, TEM, and EDAX analysis provide analytical evidence of cesium in the matrix.
机译:磷酸锆钠(NZP)是固定化核废料的潜在材料。根据固溶体的晶体数据确定了含铯的NZP结构的存在。已经发现,在不显着改变三维框架结构的情况下,最多可以将9.0%(重量)的铯加载到NZP配方中。已使用通用结构分析系统编程研究了Na_(1-x)Cs _x Zr_2P_3O_(12)(x = 0.1-0.4)的晶体化学。 CsNZP相在空间群R-3c和Z = 6中结晶。粉末衍射数据已进行Rietveld精修,以达到令人满意的R因子结构收敛。单位体积和多面体(ZrO_6和PO_4)畸变随着NZP基质中Cs〜+摩尔%的增加而增加。分配了红外区域中的PO_4拉伸和弯曲振动。 SEM,TEM和EDAX分析提供了基质中铯的分析证据。

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