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首页> 外文期刊>Chemical geology >An intercalibration study of the Fish Canyon sanidine and biotite Ar-40/Ar-39 standards and some comments on the age of the Fish Canyon Tuff
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An intercalibration study of the Fish Canyon sanidine and biotite Ar-40/Ar-39 standards and some comments on the age of the Fish Canyon Tuff

机译:鱼峡谷山梨和黑云母Ar-40 / Ar-39标准品的相互校准研究以及对鱼峡谷凝灰岩年龄的一些评论

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The age of the Fish Canyon Tuff (FCT) has been the subject of intense study due to its potential significance as a geochronological test to establish age concordance between the K/Ar and U/Pb isotopic systems. Minerals from the FCT (notably sanidine and biotite) are in widespread use as Ar-40/Ar-39 fluence monitors ("standards") and have been employed as both primary and intercalibrated standards. In attempting to constrain the true age of FCT, the distinction between primary vs. intercalibrated ages is important, as only the primary age determinations are valid. An investigation of both Fish Canyon sanidine (FCs) and Fish Canyon biotite (FCT-3) was undertaken to assess the chemical and isotopic homogeneity of the minerals on a grain-to-grain scale. Electron microprobe results show that FCs is chemically homogeneous, verifying previous studies, although there are some very small zones of minor K depletion; FCT-3 biotite commonly contains numerous and small mineral inclusions. Ar-40/Ar-39 experiments further show that FCs is remarkably homogeneous, confirming previous observations, whereas FCT-3 shows much greater isotopic variability due to contamination from the mineral inclusions. By setting the age of FCs equal to 27.98 +/- 0.15 Ma (2sigma), as intercalibrated to the U/Pb system by Villeneuve et al. (2000), the resultant intercalibration factor between FCs and FCT-3 is 1.005+/-0.017 yielding an age of 28.13+/-0.47 Ma (2sigma) for FCT-3, although the significant intragrain chemical and isotopic variability precludes its use as an effective Ar-40/Ar-39 fluence monitor. The true age of the FCT is problematic; a survey of all primary ages for FCT shows that mean K/Ar ages for plagioclase, hornblende, biotite, and sanidine are consistently younger than mean U/Pb ages from titanite and zircon. In conjunction with recently published petrological results which indicate that the FCT contains material from multiple crystallization events, this significant discrepancy between the K/Ar and U/Pb data sets demonstrates that the Fish Canyon Tuff cannot serve as a golden standard between the K/Ar and U/Pb systems. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 34]
机译:鱼峡谷凝灰岩(FCT)的年龄已成为人们广泛研究的课题,因为它作为建立K / Ar和U / Pb同位素系统之间年龄一致性的年代学测试的潜在意义。来自FCT的矿物质(特别是山南矿和黑云母)被广泛用作Ar-40 / Ar-39能量通量监测仪(“标准”),并且已被用作主要标准和相互校准的标准。在尝试限制FCT的真实年龄时,区分主要年龄和校准年龄之间的区别很重要,因为只有主要年龄的确定才有效。进行了鱼类峡谷山idine(FCs)和鱼类峡谷黑云母(FCT-3)的调查,以评估谷物对谷物的化学和同位素同质性。电子探针的结果表明,虽然化学成分很均匀,但FCs是化学均质的,尽管存在一些很小的钾耗竭区域。 FCT-3黑云母通常包含大量和较小的矿物包裹体。 Ar-40 / Ar-39实验进一步表明,FCs非常均匀,这证实了先前的观察结果,而FCT-3由于矿物包裹体的污染而显示出更大的同位素变异性。通过将FC的寿命设置为等于27.98 +/- 0.15 Ma(2sigma),这由Villeneuve等人对U / Pb系统进行了相互校准。 (2000年),FCS和FCT-3之间的互校准因数为1.005 +/- 0.017,FCT-3的年龄为28.13 +/- 0.47 Ma(2sigma),尽管显着的粒内化学和同位素变异性使其无法用作有效的Ar-40 / Ar-39通量监控器。 FCT的真实年龄存在问题;一项针对FCT所有主要年龄的调查显示,斜长石,角闪石,黑云母和Sanidine的平均K / Ar年龄始终比来自钛铁矿和锆石的U / Pb的平均年龄年轻。结合最近发表的岩石学结果表明FCT包含来自多个结晶事件的物质,K / Ar和U / Pb数据集之间的显着差异表明,鱼峡谷凝灰岩不能作为K / Ar之间的黄金标准和U / Pb系统。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:34]

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