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Contrasting Archean and Proterozoic lithospheric mantle: isotopic evidence from the Shonkin Sag sill (Montana)

机译:太古代和元古代的岩石圈地幔对比:Shonkin凹陷基岩(蒙大拿州)的同位素证据

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摘要

207Pb/204Pb versus 206Pb/204Pb model ages using Shonkin Sag data and published analyses for magmas of the Cenozoic Wyoming-Montana alkaline province (WYMAP) provide evidence of an Archean age for the subcontinental lithospheric mantle (SLM) associated with the Wyoming craton. The SLM imprint on magmas is expressed as Ba, Ta, Nb and Ti "anomalies" which correlate with radiogenic isotopic data, and it resembles a subduction imprint on Cenozoic south-western USA basalts (SWUSAB). However the latter give Proterozoic Pb isotope model ages. Although the Archean and Proterozic model ages may represent mixing lines, the fact that they resemble the ages for continental crust cut by WYMAP and SWUSAB respectively indicates that the age of the underlying SLM helped control the "isochron" slopes and inferred "ages". Lower 143Nd/144Nd and 206Pb/204Pb but comparable 87Sr/86Sr for WYMAP suggest that SLM associated with Archean cratons has lower Sm/Nd, U/Pb and Rb/Sr ratios than SLM associated with SWUSAB Proterozic terranes, regardless of when the subduction imprint or imprints developed. WYMAP magmas have high Pb/Zr ratios indicating that Archean SLM, like Archean continental crust, is enriched in Pb compared to Proterozoic SLM. If the enrichment was Archean, it implies that higher Archean heat flow enhanced Pb transfer from the subducting slab to overlying lithospheric mantle and crust. A subducted sediment imprint on the SLM is also consistent with high δ18O values for the Shonkin Sag. Low TiO2 in WYMAP may reflect a residual mantle TiO2 phase. If so, the Nb "missing" from crustal and oceanic mantle reservoirs may reside in rutile of Archean SLM. Isotopic similarities between WYMAP and EM1 oceanic island basalts may reflect the presence of delaminated, Archean SLM in the oceanic mantle, although low Pb/Zr ratios and a lack of Ti, Nb and Ta anomalies in oceanic island basalts deserve further investigation.
机译:使用Shonkin凹陷资料和已发表的怀俄明州-蒙大拿州碱性省岩浆分析(WYMAP),发现207 Pb / 204 Pb与206 Pb / 204 Pb模型年龄怀俄明克拉通相关的次大陆岩石圈地幔(SLM)的太古时代的证据。岩浆上的SLM印记表示为Ba,Ta,Nb和Ti“异常”,它们与放射同位素数据相关,并且类似于在美国西南部新生代玄武岩上的俯冲印记(SWUSAB)。然而,后者赋予了元古代铅同位素模型的年龄。尽管太古宙和元古代的模型年龄可能代表着混合线,但它们分别类似于WYMAP和SWUSAB切割的大陆壳的年龄这一事实表明,基础SLM的年龄有助于控制“等时线”斜率并推断“年龄”。对于WYMAP,较低的143 Nd / 144 Nd和206 Pb / 204 Pb,但可比较的87 Sr / 86 Sr表明SLM与与俯冲印记或印记何时发展无关,太古代克拉通的Sm / Nd,U / Pb和Rb / Sr比值均低于与SWUSAB原生质岩相关的SLM。 WYMAP岩浆具有较高的Pb / Zr比,这表明与元古代SLM相比,太古代SLM像太古代大陆壳一样富含Pb。如果富集是太古宙,则意味着更高的太古宙热流增强了Pb从俯冲板向上覆岩石圈地幔和地壳的转移。 SLM上的俯冲沉积物印记也与Shonkin凹陷的高δ18 O值一致。 WYMAP中的TiO2 含量低可能反映出残余的TiO2 相。如果这样的话,地壳和海洋地幔储层中“丢失”的Nb可能存在于Archean SLM的金红石中。 WYMAP和EM1海洋岛屿玄武岩之间的同位素相似性可能反映了海洋地幔中存在分层的太古宙SLM,尽管海洋岛屿玄武岩中低的Pb / Zr比值和缺乏的Ti,Nb和Ta异常值得进一步研究。

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