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Crystal Chemistry and Stability of Hydrated Rare-Earth Phosphates Formed at Room Temperature

机译:室温下水合稀土磷酸盐的晶体化学和稳定性

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In order to understand the crystal chemical properties of hydrous rare-earth (RE) phosphates, REPO 4,hyd , that form at ambient temperature, we have synthesized REPO 4,hyd through the interaction of aqueous RE elements (REEs) with aqueous P at room temperature at pH < 6, where the precipitation of RE hydroxides does not occur, and performed rigorous solid characterization. The second experiment was designed identically except for using hydroxyapatite (HAP) crystals as the P source at pH constrained by the dissolved P. Hydrated RE phosphate that precipitated at pH 3 after 3 days was classified into three groups: LREPO 4,hyd (La ?¢???? Gd) containing each REE from La-Gd, MREPO 4,hyd (Tb ?¢???? Ho), and HREPO 4,hyd (Er ?¢???? Lu). The latter two groups included increasing fractions of an amorphous component with increasing ionic radius, which was associated with non-coordinated water. RE all PO 4,hyd that contains all lanthanides except Pm transformed to rhabdophane structure over 30 days of aging. In the experiments using HAP, light REEs were preferentially distributed into nano-crystals, which can potentially constrain initial RE distributions in aqueous phase. Consequently, the mineralogical properties of hydrous RE phosphates forming at ambient temperature depend on the aging, the pH of the solution, and the average ionic radii of REE, similarly to the well-crystalline RE phosphates.
机译:为了了解在环境温度下形成的含水稀土磷酸盐(RE)4,hyd的晶体化学性质,我们通过在60°C下将RE水溶液(REEs)与P水溶液相互作用而合成了REPO 4,hyd。室温下,pH <6,不会发生RE氢氧化物的沉淀,并进行了严格的固体表征。除在溶解的P约束的pH值下使用羟磷灰石(HAP)晶体作为P源外,第二个实验的设计相同。将3天后在pH 3下沉淀的水合RE磷酸盐分为三类:LREPO 4,hyd(La?包含来自La-Gd,MREPO 4,hyd(Tb→?)和HREPO 4,hyd(Er→¢)的每个REE的¢?后两组包括随着离子半径增加而增加的无定形组分的分数,这与非配位水有关。 RE老化30天后,所有含有除Pm以外的所有镧系元素的PO 4,hyd均转变为菱形结构。在使用HAP的实验中,轻稀土元素优先分布在纳米晶体中,这可能会限制水相中的初始RE分布。因此,类似于良好结晶的RE磷酸盐,在环境温度下形成的含水RE磷酸盐的矿物学性质取决于老化,溶液的pH和REE的平均离子半径。

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