SONG Zi-jian, TENG Yuan-cheng, REN Xue-tan, GONG Miao-miao. Stability of Ca0.86Nd0.14Ti0.86Al0.14SiO5 Solid Solution by Coupling Effect of THMC[J]. Atomic Energy Science and Technology, 2013, 47(6): 920-925. DOI: 10.7538/yzk.2013.47.06.0920
Citation: SONG Zi-jian, TENG Yuan-cheng, REN Xue-tan, GONG Miao-miao. Stability of Ca0.86Nd0.14Ti0.86Al0.14SiO5 Solid Solution by Coupling Effect of THMC[J]. Atomic Energy Science and Technology, 2013, 47(6): 920-925. DOI: 10.7538/yzk.2013.47.06.0920

Stability of Ca0.86Nd0.14Ti0.86Al0.14SiO5 Solid Solution by Coupling Effect of THMC

  • Sphene solid solution doped neodymium (Ca0.86Nd0.14Ti0.86Al0.14SiO5) was prepared using CaCO3,Nd2O3,TiO2,SiO2 and Al2O3 as raw materials by solidreaction. The chemical stability of sphene solid solution doped Nd by the coupling effect of thermodynamics-hydrodynamics-mechanics-chemistry (THMC) was investigated by the means of product consistency test (PCT), X-ray diffraction (XRD), scanning electron microscope (SEM), inductively coupled plasma atomic emission spectrometry (ICP-OES) and so on. The results indicate that Ca0.86Nd0.14Ti0.86Al0.14SiO5 solid solution has good chemical stability by the coupling effect of the pH=5.9, 150-200 ℃ and 0.476-1.554 MPa; the pH value and temperature (pressure) have no significant impact on the normalized leach rate of Si4+, Al3+ and Nd3+; the anti-leaching property of Ca2+ at 200 ℃ (1.554 MPa) is better than that at 150 ℃; early in the immersion, the anti-leaching property of Ca2+ in pH=9 is better than that in pH=5 and 7, late in the immersion, the anti-leaching property of Ca2+ in solid solution is converge in the three solution; the antileaching property of Ti4+ in pH=9 is better than that in pH=5 and 7.
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