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首页> 外文期刊>Quaternary International >Assessing Optically Stimulated Luminescence (OSL) signal contamination within small aliquots and single grain measurements utilizing the composition test
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Assessing Optically Stimulated Luminescence (OSL) signal contamination within small aliquots and single grain measurements utilizing the composition test

机译:使用成分测试评估小等分试样和单颗粒测量中的光刺激发光(OSL)信号污染

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摘要

Quartz in tectonically active regions can suffer from signal contamination when utilized for Optically Stimulated Luminescence (OSL) dating. Typically, these environments bring quartz-bearing bedrock to the surface, which erodes and enters geomorphic systems with little fluvial reworking, resulting in dim OSL signal response. Conversely, feldspars often have an inherently brighter signal, even among bedrock or freshly eroded samples. Environments with dim quartz can be difficult to date as the signal contribution from errant feldspars may dominate the measured signal. Further, immature sediments may retain mineral inclusions within quartz grains that would have been physically or chemically eroded in more mature sediments. Previously, we presented a signal composition test which utilizes thermal quenching and IR bleaching susceptibility to assess the purity of a quartz sample. Additional measurements have been made, looking at the systematics of how small volumes of feldspar can affect the results of aliquots analyzed with this composition test. Further, different feldspar samples have been assessed for their response to the composition test and chemical compositions were determined using energy-dispersive X-ray (EDX) spectroscopy with a scanning electron microscope (SEM). Finally, we present a single grain protocol for the composition test.
机译:当用于光激发发光(OSL)测年时,构造活跃区域中的石英可能会遭受信号污染。通常,这些环境将带有石英的基岩带到地表,侵蚀并进入河流地貌系统,几乎没有河流改造,导致OSL信号响应变暗。相反,即使在基岩或新侵蚀的样品中,长石也通常具有固有的明亮信号。石英晶体较弱的环境可能很难确定日期,因为错误的长石产生的信号可能会占主导地位。此外,不成熟的沉积物可能将石英内的矿物夹杂物保留在更成熟的沉积物中,而这些物质会被物理或化学侵蚀。以前,我们提出了一种信号成分测试,该测试利用热淬灭和IR漂白敏感性来评估石英样品的纯度。进行了其他测量,查看了长石的小体积如何影响用该组成测试分析的等分试样结果的系统性。此外,已经评估了不同的长石样品对组成测试的响应,并使用具有扫描电子显微镜(SEM)的能量色散X射线(EDX)光谱仪确定了化学组成。最后,我们提出了用于成分测试的单颗粒方案。

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