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~(40)Ar-/~(39)Ar Dating of Zn-Pb-Ag Mineralization in the Northern Brooks Range, Alaska

机译:阿拉斯加北部布鲁克斯山脉Zn-Pb-Ag矿化的〜(40)Ar- /〜(39)Ar定年

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The ~(40)Ar-/~(39)Ar laser step-heating method potentially can be used to provide absolute ages for a number of formerly undatable, low-temperature ore deposits. This study demonstrates the use of this method by determining absolute ages for Zn-Pb-Ag sediment-hosted massive sulfide deposits and vein-breccia occurrences found throughout a 300-km-long, east-west-trending belt in the northern Brooks Range, Alaska. Massive sulfide deposits are hosted by Mississippian to Pennsylvanian(P) black carbonaceous shale, siliceous mudstone, and lesser chert and carbonate turbidites of the Kuna Formation (e.g., Red Dog, Anarraaq, Lik (Su), and Drenchwater). The vein-breccia occurrences (e.g., Husk)', Story Creek. West Kivliktort Mountain, Vidlee, and Kady) are hosted by a deformed but only weakly metamorphosed package of Upper Devonian to Lower Mississippian mixed continental and marine clastic rocks (the Endicott Group) that stratigraphically underlie the Kuna Formation. The vein-breccias are mineralogically similar to, but not spatially associated with, known massive sulfide deposits. The region's largest shale-hosted massive sulfide deposit is Red Dog; it has reserves of 148 Mt grading 16.6 percent zinc, 4.5 percent lead, and 77 g of silver per tonne. Hydrothermally produced white mica in a whole-rock sample from a sulfide-bearing igneous sill within the Red Dog deposit yielded a plateau age of 314.5 Ma. The plateau age of this whole-rock sample records the time at which temperatures cooled below the argon closure temperature of the white mica and is interpreted to represent the minimum age limit for massive sulfide-related hydrothermal activity in the Red Dog deposit. Sulfide-bearing quartz veins at Drenchwater crosscut a hypabyssal intrusion with a maximum biotite age of 337.0 Ma. Despite relatively low sulfide deposition temperatures in the vein-breccia occurrences (162 deg -251 deg C), detrital white mica in sandstone immediately adjacent to large vein-breccia zones was partially to completely recrystallized. The ~(40)Ar-/~(39)Ar age spectra and inverse isochron plots of the multicomponent whole-rock sandstone samples are more complex than those of single minerals. However, different minerals have different Ca/K and Cl/K ratios and closure temperatures, and these properties were used to identify portions of spectra dominated by argon release from specific minerals. ~(40)Ar-/~(39)Ar laser step-heating analyses of Late Devonian sandstone whole rocks produced spectra that record a two-stage resetting history: a Carboniferous hydrothermal event first and later Mesozoic to Tertiary events, which are in agreement with geologic constraints. The ~(40)Ar-/~(39)Ar ages and the similar mineralogy, lead isotope composition, and relative stratigraphic positions support the interpretation that the shale-hosted massive sulfide deposits and most vein-breccia occurrences are temporally and genetically related, and that they are different expressions of Carboniferous basinal dewatering.
机译:〜(40)Ar- /〜(39)Ar激光步进加热方法可能可用于为许多以前无法稳定的低温矿床提供绝对年龄。这项研究通过确定Zn-Pb-Ag沉积物所蕴藏的块状硫化物矿床的绝对年龄和在整个布鲁克斯山脉北部300公里长的东西向趋势带中发现的脉角砾岩发生,证明了这种方法的使用,阿拉斯加州。密西西比州拥有大量的硫化物矿床,包括宾夕法尼亚州(P)的黑色碳质页岩,硅质泥岩以及库纳组的较小的石和碳酸盐浊度(例如红狗,阿纳拉克,Lik(Su)和Drenchwater)。脉角砾岩发生(例如,Husk)',Story Creek。西基夫利克托特山,维德利和凯迪)由上泥盆统至下密西西比下混合的陆相和海洋碎屑岩(恩迪科特群)的变形但仅有微弱变质的岩层包裹,地层位于库纳组。脉角砾岩在矿物学上与已知的块状硫化物矿床相似,但在空间上不相关。该地区最大的页岩气蕴藏的块状硫化物矿床是红狗(Red Dog)。它的储量为148 Mt,每吨含锌16.6%,铅为4.5%,白银为77克。在红狗矿床内含硫化物的火成岩基岩的全岩样中,通过热液法生成的白云母,形成的高原年龄为314.5 Ma。该全岩样的高原年龄记录了温度冷却到白云母的氩气封闭温度以下的时间,并被解释为代表红狗矿床中大量与硫化物有关的热液活动的最小年龄限制。 Drenchwater的含硫石英脉横穿了一个黑曜石侵入体,最大黑云母年龄为337.0 Ma。尽管在脉角砾岩中硫化物的沉积温度较低(162摄氏度-251摄氏度),但紧邻大脉角砾岩区域的砂岩中碎屑白云母部分重结晶。多组分全岩石砂岩样品的〜(40)Ar- /〜(39)Ar年龄谱和逆等时线图比单个矿物的复杂得多。但是,不同的矿物具有不同的Ca / K和Cl / K比值以及关闭温度,这些特性被用来识别由特定矿物释放的氩所占主导的光谱部分。泥盆纪晚期砂岩整体岩石的〜(40)Ar- /〜(39)Ar激光步进加热分析产生的光谱记录了两个阶段的重置历史:首先是石炭纪热液事件,后来是中生代至第三纪事件,这是一致的受地质限制。 〜(40)Ar- /〜(39)Ar年龄以及相似的矿物学,铅同位素组成和相对地层位置支持了这样的解释:页岩气中存在的块状硫化物矿床和大多数脉角砾岩的发生与时间和遗传有关,并且它们是石炭纪盆地脱水的不同表达。

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