Unmixing multiple metamorphic muscovite age populations with powder X-ray diffraction and 40Ar/39Ar analysis

IF 1.9 3区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY American Journal of Science Pub Date : 2021-03-01 DOI:10.2475/03.2021.02
R. McAleer, D. Bish, M. Kunk, P. Valley, G. Walsh, R. Wintsch
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引用次数: 1

Abstract

A combination of modal estimates from powder X-ray diffraction (XRD) experiments and argon isotopic data shows that muscovite 40Ar/39Ar total gas age correlates with muscovite composition near the retrograde Bald Mountain shear zone (BMSZ) in Claremont, New Hampshire, and that the shear zone was active at ∼245 Ma. Petrologic study demonstrates that chemical disequilibrium is preserved in muscovite grains in these samples. The recognition of this preservation is critical to the interpretation of the 40Ar/39Ar step-heating experiments, which never produce age plateaus and yield spectra with steps that range in age by ∼20 Ma. Petrographic, compositional, and crystallographic data all indicate that the age spectra reflect dissolution of metastable Na-rich muscovite and precipitation of stable Na-poor muscovite associated with deformation in the BMSZ.Comparison of whole rock and muscovite concentrate XRD patterns from individual samples demonstrates that the mineral separation process can fractionate these muscovite populations. Therefore, four muscovite concentrates of varying magnetic susceptibility were prepared from a single hand sample, analyzed by XRD, and dated. These four splits define a mixing line that resolves end-member ages of 244.5 ± 4.2 Ma and 302.5 ± 12.5 Ma (1σ). Although the ages are imprecise, the petrologically supported conclusion that these schists preserve two discrete ages is distinct from an interpretation that the spectra reflect cooling through closure at ∼270 Ma, as might be concluded in the absence of petrologic characterization. The XRD results also demonstrate that, even well above anchizone conditions, petrologic information relevant to 40Ar/39Ar dating is observable in subtle variations in the crystallography of muscovite grains.
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用粉末X射线衍射和40Ar/39Ar分析去除多个变质白云母年龄群
粉末X射线衍射(XRD)实验和氩同位素数据的模态估计相结合表明,白云母40Ar/39Ar总气体年龄与新罕布什尔州克莱蒙特的后退巴尔德山剪切带(BMSZ)附近的白云母成分相关,剪切带在~245Ma时活跃。岩石学研究表明,这些样品中的白云母颗粒存在化学不平衡现象。对这种保存的认识对于解释40Ar/39Ar步进加热实验至关重要,该实验从不产生年龄平台,并产生年龄在~20 Ma范围内的阶跃光谱。岩石学、组成学,和晶体学数据都表明,年龄谱反映了亚稳态富钠白云母的溶解和稳定的贫钠白云母在BMSZ中的沉淀与变形有关。单个样品的全岩和白云母精矿XRD图谱的比较表明,矿物分离过程可以分馏这些白云母群体。因此,从单手样品中制备了四种不同磁化率的白云母精矿,通过XRD进行分析,并确定了年代。这四个分裂定义了一条混合线,该混合线解决了244.5±4.2 Ma和302.5±12.5 Ma(1σ)的端部构件年龄。尽管年龄不精确,但岩石学支持的这些片岩保留了两个离散年龄的结论与光谱反映约270 Ma闭合冷却的解释不同,这可能是在缺乏岩石学特征的情况下得出的结论。XRD结果还表明,即使远高于安奇宗条件,在白云母晶粒晶体学的细微变化中,也可以观察到与40Ar/39Ar定年相关的岩石学信息。
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来源期刊
American Journal of Science
American Journal of Science 地学-地球科学综合
CiteScore
5.80
自引率
3.40%
发文量
17
审稿时长
>12 weeks
期刊介绍: The American Journal of Science (AJS), founded in 1818 by Benjamin Silliman, is the oldest scientific journal in the United States that has been published continuously. The Journal is devoted to geology and related sciences and publishes articles from around the world presenting results of major research from all earth sciences. Readers are primarily earth scientists in academia and government institutions.
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