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Quantitative high-resolution cathodoluminescence spectroscopy of smithsonite

机译:钛铁矿的高分辨率高分辨率阴极发光光谱

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Five smithsonite samples from locations in Germany, Mexico and Namibia have been investigated with cathodoluminescence (CL) spectroscopy and trace-element analyses. As with other carbonates, the CL properties of smithsonite are mainly controlled by Mn2+- and Fe2+-incorporation, because these elements are the most important activator and quencher species, respectively. Additional trace elements may have either a quenching effect (Cu) or have only small or no influence (Ca, Pb). A linear correlation exists between the Mn content and the intensity of the Mn-emission band in smithsonite, which can be quantified, if the Cl intensity is related to the number of moles of Mn rather than the weight fraction. A correlation between the Cl intensity and the Mn concentration, which is valid for all trigonal carbonates, is obtained from the published results of calcite, dolomite and smithsonite. Matrix effects due to the different chemical composition of the carbonate minerals seem to be of lesser importance.
机译:用阴极发光(CL) 光谱法和痕量元素分析法对来自德国,墨西哥和 纳米比亚的五个史密斯样品进行了调查。像其他碳酸盐一样, 铁锌矿的CL性质主要受Mn 2 + - 和Fe 2 + 的控制。 -掺入,因为这些元素分别是最 重要的活化剂和淬灭剂。其他 痕量元素可能具有淬灭作用(Cu)或仅具有很小的影响或没有影响(Ca,Pb)。锰含量与锰锌矿中锰释放带的强度之间存在线性关系,如果Cl强度 可以量化与Mn的摩尔数而不是重量 分数有关。从方解石,白云石和 ,Cl强度与Mn 浓度之间的相关性对所有三角碳酸盐均有效。 >铁匠石。碳酸盐矿物化学成分不同的基质效应似乎不太重要。

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