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Infrared Radiofluorescence (IR-RF) of K-Feldspar: An Interlaboratory Comparison

机译:钾长石的红外放射荧光 (IR-RF):实验室间比较

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Infrared Radiofluorescence (IR-RF) is a relatively new method for dosimetric dating of the depositional timing of sediments. This contribution presents an interlaboratory comparison of IR-RF measurements of sedimentary feldspar from eight laboratories. A comparison of the variability of instrumental background, bleaching, saturation, and initial rise behaviour of the IR-RF signal was carried out. Two endmember samples, a naturally bleached modern dune sand sample with a zero dose and a naturally saturated sample from a Triassic sandstone (~250 Ma), were used for this interlaboratory comparison. The major findings of this study are that (1) the observed IR-RF signal keeps decreasing beyond 4000 Gy, (2) the saturated sample gives an apparent palaeodose of 1265 ± 329 Gy and (3) in most cases, the natural IR-RF signal of the modern analogue sample (resulting from natural bleaching) is higher than the signal from laboratory-induced bleaching of 6 h, using a solar simulator (SLS). In other words, the laboratory sample bleaching was unable to achieve the level of natural bleaching. The results of the investigations are discussed in detail, along with possible explanations.
机译:红外放射荧光(IR-RF)是一种相对较新的沉积物沉积时间的剂量测年方法。本文对来自八个实验室的沉积长石的 IR-RF 测量进行了实验室间比较。比较了 IR-RF 信号的仪器背景、漂白、饱和度和初始上升行为的可变性。两个端元样品,一个是零剂量的自然漂白现代沙丘沙样品,另一个是来自三叠纪砂岩(~250 马)的天然饱和样品,用于实验室间比较。本研究的主要发现是:(1)观察到的IR-RF信号在4000 Gy以上持续下降,(2)饱和样品的表观古剂量为1265±329 Gy,(3)在大多数情况下,现代模拟样品的自然IR-RF信号(由自然漂白产生)高于实验室诱导的6 h漂白信号, 使用太阳光模拟器(SLS)。换言之,实验室样品漂白无法达到自然漂白的水平。详细讨论了调查结果以及可能的解释。

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