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Sampling Methods for Luminescence Dating of Subsurface Deposits from Cores

机译:岩心地下沉积物发光定年的采样方法

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摘要

Study of subsurface deposits often requires coring or drilling to obtain samples for sedimentologic and geochemical analysis. Geochronology is a critical piece of information for stratigraphic correlation and rate calculations. Increasingly, luminescence dating is applied to sediment cores to obtain depositional ages. This paper provides examples and discussion of guidelines for sampling sediment core for luminescence dating. Preferred protocols are dependent on the extraction method, sedimentology, core integrity, and storage conditions. The methods discussed include subsampling of sediment in opaque core-liners, cores without liners, previously open (split) cores, bucket auger samples, and cuttings, under red lighting conditions. Two important factors for luminescence sampling of sediment core relate to the integrity of the natural luminescence signal and the representation of the dose rate environment. The equivalent dose sample should remain light-safe such that the burial dose is not reset (zeroed) by light exposure. The sediment sampled for dose rate analyses must accurately represent all units within at least 15 cm above and below the equivalent dose sample. Where lithologic changes occur, units should be sampled individually for dose rate determination. Sediment core extraction methods vary from portable, hand-operated devices to large truck- or vessel-mounted drill rigs. We provide recommendations for luminescence sampling approaches from subsurface coring technologies and downhole samplers that span shallow to deep sample depths.
机译:研究地下沉积物通常需要取芯或钻孔以获得用于沉积学和地球化学分析的样品。年代学是地层相关性和速率计算的重要信息。发光测年法越来越多地应用于沉积物核,以获得沉积年龄。本文提供了一些实例和有关为发光测年法对沉积物芯进行采样的准则的讨论。优选的方案取决于提取方法,沉积学,岩心完整性和储存条件。所讨论的方法包括在红色照明条件下对不透明的岩心衬里,无岩心的岩心,先前打开的(分裂的)岩心,斗式螺旋钻样品和岩屑进行沉积物二次取样。沉积物芯的发光采样的两个重要因素涉及自然发光信号的完整性和剂量率环境的表示。等效剂量样品应保持光安全性,以使埋葬剂量不会因光照而重置(归零)。用于剂量率分析的采样沉积物必须准确代表等效剂量样本上下至少15厘米内的所有单位。如果发生岩性变化,应单独取样以测定剂量率。沉积岩心的提取方法从便携式的手动设备到大型的卡车或船只安装的钻机不等。我们提供了从地下取芯技术和跨浅到深采样深度的井下采样器的发光采样方法的建议。

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