首页> 外文期刊>Chemical geology >Cycling of B, Li, and LILE (K, Cs, Rb, Ba, Sr) into subduction zones: SIMS evidence from micas in high-P/T metasedimentary rocks
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Cycling of B, Li, and LILE (K, Cs, Rb, Ba, Sr) into subduction zones: SIMS evidence from micas in high-P/T metasedimentary rocks

机译:B,Li和LILE(K,Cs,Rb,Ba,Sr)向俯冲带的循环:高P / T沉积岩中云母的SIMS证据

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摘要

The Catalina Schist (California) affords a unique opportunity to evaluate the effects of varying prograde P-T paths on the magnitudes of devolatilization and chemical/isotopic alteration of subducting sediments. Analysis of a suite of trace elements (Li, B, Rb, Sr, Cs, Ba) in micas obtained by secondary ion mass spectrometry (SIMS) complements previously published whole-rock data for metasedimentary rocks in the Catalina Schist and circumvents problems associated with chemical/isotopic overprinting during retrogression, further elucidating trace element redistribution during devolatilization along prograde P-T paths. SIMS mineral analyses confirm the inference from the whole-rock data that white mica (and in a few higher-grade samples, also biotite) is the dominant reservoir for B, Rb, Ba, and Cs. The mineral residency of Li and Sr is more complex, as Li is also highly concentrated in chlorite (where present) and in some amphiboles, and Sr whole-rock budgets are strongly influenced by the presence or absence of Ca-rich phases (e.g., lawsonite, clinozoisite, minor carbonate and titanite). Changes of concentrations of B and Cs, in white micas, with increasing metamorphic grade parallel the whole-rock trends, further demonstrating the loss of these elements from recrystallizing white micas during prograde devolatilization reactions. Trace element data for other minerals in the metasedimentary samples (Ca-Al silicates, plagioclase, chlorite, biotite, garnet, kyanite) confirm expected concentrations as related to ionic radius and charge and demonstrate element redistribution during prograde (and retrograde) reactions. For amphibolite-facies metasedimentary rocks, multiple generations of white mica, including a finer-grained, higher-Si generation related to retrogradation, have distinct trace element compositions. In pegmatites produced by partial melting at amphibolite-facies conditions, B, Li, and the LILE are similarly concentrated in coarse-grained muscovite, indicating inheritance of trace element compositions from their metasedimentary sources. These SIMS data, combined with the whole-rock data for the same samples, demonstrate that the deep transfer of relatively "fluid-mobile" trace elements is strongly dependent upon the prograde P-T path experienced by the subducting sediments. Efficient retention of B, Cs, and N in micas, to depths of > 40 km, is evident from study of these and other forearc metasedimentary suites that experienced low-T prograde paths representative of most modem subduction zones, and is consistent with models invoking additions of these elements from the slab into arc source regions, perhaps to contribute to the across-arc chemical trends (Be/Be, B/La, Cs/Th, Ba/Th) observed in some margins. (c) 2006 Elsevier B.V. All rights reserved.
机译:Catalina Schist(加利福尼亚州)提供了一个难得的机会来评估变化的P-T路径对俯冲沉积物的脱挥发分和化学/同位素变化幅度的影响。通过二次离子质谱(SIMS)对云母中的痕量元素(Li,B,Rb,Sr,Cs,Ba)进行分析可补充先前发布的Catalina Schist中沉积岩的全岩石数据,并避免了与回归过程中的化学/同位素叠印,进一步阐明了脱挥发分过程中沿前进PT路径的微量元素重新分布。 SIMS矿物分析证实了从整个岩石数据中得出的结论,即白云母(在一些高品位样品中也有黑云母)是B,Rb,Ba和Cs的主要储层。 Li和Sr的矿物质赋存更为复杂,因为Li也高度集中在亚氯酸盐(如果存在)和某些闪石中,并且Sr整个岩石的预算受富含Ca的相的强烈影响(例如,钙钛矿,斜长石,次要碳酸盐和钛矿)。随着变质等级的增加,白云母中B和Cs浓度的变化与整个岩石趋势平行,这进一步证明了白云母在脱挥发分反应期间因重结晶而损失了这些元素。准沉积样品中其他矿物的微量元素数据(Ca-Al硅酸盐,斜长石,绿泥石,黑云母,石榴石,蓝晶石)证实了与离子半径和电荷有关的预期浓度,并证明了在正向(和逆行)反应中元素的重新分布。对于闪石相沉积的岩石,多代白云母,包括与回生有关的细粒,高硅生成,具有独特的痕量元素组成。在角闪石相条件下部分熔融而生成的伟晶岩中,B,Li和LILE同样集中在粗粒白云母中,表明微量元素成分是从它们的沉积沉积源继承而来的。这些SIMS数据与相同样本的整个岩石数据相结合,表明相对“流体流动”的痕量元素的深层转移强烈依赖于俯冲沉积物经历的前进P-T路径。从这些和其他前臂沉积沉积套件的研究中可以明显看出,它们能够有效地将云母中的B,Cs和N保留在> 40 km的深度,这些套件经历了代表大多数现代俯冲带的低T前进路径,并且与模型调用一致将这些元素从板坯中添加到电弧源区域中,可能有助于在某些边缘观察到的跨弧化学趋势(Be / Be,B / La,Cs / Th,Ba / Th)。 (c)2006 Elsevier B.V.保留所有权利。

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