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Contamination in the Rare-Earth Element Orthophosphate Reference Samples

机译:稀土元素正磷酸盐参考样品中的污染

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摘要

Several of the fourteen rare-earth element (plus Sc and Y) orthophosphate standards grown at Oak Ridge National Laboratory in the 1980s and widely distributed by the Smithsonian Institution’s Department of Mineral Sciences, are significantly contaminated by Pb. The origin of this impurity is the Pb2P2O7 flux that is derived from the thermal decomposition of PbHPO4. The lead pyrophosphate flux is used to dissolve the oxide starting materials at elevated temperatures (≈1360 °C) prior to the crystal synthesis. Because these rare-earth element standards are extremely stable under the electron beam and considered homogenous, they have been of enormous value to electron probe micro-analysis (EPMA). The monoclinic, monazite structure, orthophosphates show a higher degree of Pb incorporation than the tetragonal xenotime structure, orthophosphates. This paper will attempt to describe and rationalize the extent of the Pb contamination in these otherwise excellent materials.
机译:在1980年代由橡树岭国家实验室(Aak Ridge National Laboratory)生长,并由史密森尼学会(Smithsonian Institution)矿物科学系广泛分发的14种稀土元素(加上Sc和Y)正磷酸盐标准中的几种已受到Pb的严重污染。该杂质的来源是PbHPO4的热分解产生的Pb2P2O7助焊剂。晶体合成之前,焦磷酸铅助熔剂用于在高温(约1360°C)下溶解氧化物原料。由于这些稀土元素标准品在电子束下非常稳定并且被认为是同质的,因此它们对电子探针微分析(EPMA)具有巨大的价值。单斜,独居石结构的正磷酸盐比四方异种时间结构的正磷酸盐显示更高的Pb结合度。本文将尝试描述和合理化这些本来很好的材料中铅的污染程度。

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