Minimizing the effects of Pb loss in detrital and igneous U–Pb zircon geochronology by CA-LA-ICP-MS

IF 2.7 Q2 GEOCHEMISTRY & GEOPHYSICS Geochronology Pub Date : 2024-03-27 DOI:10.5194/gchron-6-89-2024
E. Donaghy, Michael P. Eddy, Federico Moreno, Mauricio Ibañez-Mejia
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Abstract

Abstract. Detrital zircon geochronology by laser ablation–inductively coupled plasma–mass spectrometry (LA-ICP-MS) is a widely used tool for determining maximum depositional ages and sediment provenance, as well as reconstructing sediment routing pathways. Although the accuracy and precision of U–Pb geochronology measurements have improved over the past 2 decades, Pb loss continues to impact the ability to resolve zircon age populations by biasing affected zircon toward younger apparent ages. Chemical abrasion (CA) has been shown to reduce or eliminate the effects of Pb loss in zircon U–Pb geochronology but has yet to be widely applied to large-n detrital zircon analyses. Here, we assess the efficacy of the chemical abrasion treatment on zircon prior to analysis by LA-ICP-MS and discuss the advantages and limitations of this technique in relation to detrital zircon geochronology. We show that (i) CA does not systematically bias LA-ICP-MS U–Pb dates for 13 reference materials that span a wide variety of crystallization dates and U concentrations, (ii) CA-LA-ICP-MS U–Pb zircon geochronology can reduce or eliminate Pb loss in samples that have experienced significant radiation damage, and (iii) bulk CA prior to detrital zircon U–Pb geochronology by LA-ICP-MS improves the resolution of age populations defined by 206Pb/238U dates (Neoproterozoic and younger) and increases the percentage of concordant analyses in age populations defined by 207Pb/206Pb dates (Mesoproterozoic and older). The selective dissolution of zircon that has experienced high degrees of radiation damage suggests that some detrital zircon age populations could be destroyed or have their abundance significantly modified during this process. However, we did not identify this effect in either of the detrital zircon samples that were analyzed as part of this study. We conclude that pre-treatment of detrital zircon by bulk CA may be useful for applications that require increased resolution of detrital zircon populations and increased confidence that 206Pb/238U dates are unaffected by Pb loss.
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利用 CA-LA-ICP-MS 尽量减少碎片和火成岩 U-Pb 锆石地质年代学中铅损失的影响
摘要。利用激光烧蚀-电感耦合等离子体质谱法(LA-ICP-MS)进行的碎屑锆石地质年代学研究是一种广泛使用的工具,可用于确定最大沉积年龄和沉积物产地,以及重建沉积物的路径。尽管在过去 20 年中铀-铅地质年代测量的准确性和精确度有所提高,但铅的损失仍会使受影响的锆石偏向较年轻的表观年龄,从而影响锆石年龄群的分辨能力。化学研磨(CA)已被证明可以减少或消除锆石 U-Pb 地球年代学中铅损失的影响,但尚未广泛应用于大 n 粒锆石分析。在此,我们评估了在使用 LA-ICP-MS 分析之前对锆石进行化学研磨处理的效果,并讨论了该技术在碎屑锆石地质年代学方面的优势和局限性。我们的研究表明:(i) 对于结晶日期和铀浓度跨度较大的 13 种参考材料,CA 不会对 LA-ICP-MS 的 U-Pb 日期产生系统性偏差;(ii) CA-LA-ICP-MS U-Pb 锆石地质年代学可以减少或消除经历过严重辐射损伤的样品中的铅损失;以及 (iii) 在使用 LA-ICP-MS 之前对锆石进行批量 CA 处理,可以减少或消除锆石中的铅损失、(iii) 在用 LA-ICP-MS 对锆英石碎片进行 U-Pb 地质年代学研究之前先进行批量 CA,可提高根据 206Pb/238U 日期确定的年龄群(新元古代及更年轻)的分辨率,并增加根据 207Pb/206Pb 日期确定的年龄群(中元古代及更古老)的一致分析百分比。经历过高度辐射损伤的锆石的选择性溶解表明,在这一过程中,一些碎屑锆石年龄群可能被破坏或其丰度发生重大变化。然而,我们在本研究中分析的任何一个碎屑锆石样本中都没有发现这种影响。我们的结论是,通过批量 CA 对碎屑锆石进行预处理,对于需要提高碎屑锆石群的分辨率和增加 206Pb/238U 日期不受铅损失影响的信心的应用可能是有用的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Geochronology
Geochronology Earth and Planetary Sciences-Paleontology
CiteScore
6.60
自引率
0.00%
发文量
35
审稿时长
19 weeks
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