铅同位素跟踪地壳内分馏与地壳厚度的含义

IF 2.9 2区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS
Priyanjan Datta , Janne Liebmann , Christopher L. Kirkland , Bryant Ware , David R. Mole
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引用次数: 0

摘要

铅同位素为了解大陆地壳形成的地质过程提供了宝贵的见解,揭示了可能难以通过其他同位素系统获得的信息。虽然Lu-Hf(或Sm-Nd)和氧同位素在概念上分别跟踪地幔提取或与水圈的相互作用,但Pb同位素对地壳内部过程更敏感。在这里,我们提供了新的原位LA-MC-ICP-MS k长石和TIMS全岩Pb同位素数据,这些数据来自澳大利亚东南部Delamerian和Lachlan褶皱带的I-, S-和a型花岗岩,覆盖了主要岩石构造边界的东西样带。从贫铀和贫钍矿物(如钾长石)和花岗岩全岩样品(校正了放射性成因的铅长石)中测定的初始铅同位素比与花岗岩类型没有相关性,与大多数全岩地球化学也没有统计学意义上的显著关系,与Nd同位素的相关性很小。然而,Pb同位素比值与区域重力自由空气异常、地形高程、莫霍深度等地壳厚度指标以及Sr/Y和Eu异常的变化具有相似的空间格局,这些变化可能与熔体提取深度有关。这些结果支持了一种解释,即Pb同位素特征设置在地壳柱内的岩浆源区,基本上不受后期分馏的影响。因此,铅同位素可以有效地区分下地壳贫铀和贫钍源与上地壳富铀源。此前在拉克兰褶皱带中部推断出一个神秘的下地壳塞尔温地块。铅同位素数据可能有助于深入了解该区块,解析出与该区块面积一致的贫铀和贫钍带,表明该区块曾发生过高级别熔体耗尽事件。我们得出结论,花岗岩Pb同位素特征最终跟踪了最终熔体提取之前的地壳内分馏程度,这有助于形成增厚的地壳。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lead isotopes track intracrustal fractionation with implications for crustal thickness
Lead isotopes provide valuable insight into the geological processes involved in the formation of continental crust, revealing information that may be difficult to access through other isotopic systems. While Lu-Hf (or Sm-Nd) and oxygen isotopes conceptually track mantle extraction or interaction with the hydrosphere, respectively, Pb isotopes are more sensitive to intracrustal processes. Here, we present new in situ LA-MC-ICP-MS K-feldspar and TIMS whole-rock Pb isotope data from I-, S-, and A-type granites covering an east-west transect across major lithotectonic boundaries in the Delamerian and the Lachlan Fold Belts, southeastern Australia. Initial Pb isotopic ratios determined from U- and Th-poor minerals (e.g., K-feldspar) and granite whole-rock samples (corrected for radiogenic Pb ingrowth) show no correlation with granite type nor have a statistically significant relationship with most whole-rock geochemistry and show little correlation with Nd isotopes. However, Pb isotope ratios reveal similar spatial patterns to various proxies of crustal thickness, such as regional gravity free-air anomalies, topographic elevation, and Moho depth, as well as changes in Sr/Y and Eu anomalies, which may be linked to melt extraction depths. These results support an interpretation in which Pb isotope signatures are set in the magma source region within the crustal column, essentially unaffected by later-stage fractionation. Lead isotopes thus effectively distinguish lower crustal, U- and Th-depleted sources from upper crustal, enriched sources. An enigmatic lower crustal Selwyn Block has previously been inferred in central Lachlan Fold Belt. Lead isotope data may provide insight into this block, resolving a U and Th depleted zone aligning with its areal extent, suggesting a previous high-grade melt depletion event. We conclude that granite Pb isotope signatures ultimately track the degree of intracrustal fractionation prior to the final melt extraction, which contributes to building a thickened crust.
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来源期刊
Lithos
Lithos 地学-地球化学与地球物理
CiteScore
6.80
自引率
11.40%
发文量
286
审稿时长
3.5 months
期刊介绍: Lithos publishes original research papers on the petrology, geochemistry and petrogenesis of igneous and metamorphic rocks. Papers on mineralogy/mineral physics related to petrology and petrogenetic problems are also welcomed.
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