首页> 外文学位 >The evolution, argon diffusion properties, and 40Argon/39Argon ages of detachment-related fault rocks in the footwalls of the Whipple and Chemehuevi Mountains, Southeastern, California.
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The evolution, argon diffusion properties, and 40Argon/39Argon ages of detachment-related fault rocks in the footwalls of the Whipple and Chemehuevi Mountains, Southeastern, California.

机译:加利福尼亚州东南部的Whipple和Chemehuevi山的下盘壁中与脱离相关的断层岩的演化,氩扩散特性和40Argon / 39Argon年龄。

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摘要

Furnace and laser spot methods of obtaining 40Ar/ 39Ar ages from fine-grained cataclasite and pseudotachylyte are compared and evaluated in terms of protolith, faulting, and cooling age components. These methods are applied to fault rocks from outcrop-scale, small-displacement, brittle detachment faults (minidetachments or MDF's) that cut mid-crustal rocks from the footwalls of brittle, large-displacement (>20 km), top-to-the-NE, low-angle normal (i.e., detachment) faults in the Whipple (WM) and Chemehuevi Mountains (CM), SE California. Mid-Tertiary extension affected both areas from ∼26 Ma to ∼11–8 Ma. Rapid footwall cooling began at ∼22 Ma. WM-CM furnace ages range from 22.0 ± 1.3 to 14.6 ± 0.6 Ma, CM laser ages from 29.9 ± 3.7 to 15.7 ± 1.2 Ma. These ages are younger than host protolith formation and record detachment faulting or footwall cooling.; At least 50 MDF's were mapped; they typically cut all basement fabrics. Brittle MDFand detacriment-generated fault rocks are texturally similar, but some in the WM are plastically deformed. Fault rock matrix was mechanically extracted, optically studied, probed to characterize bulk mineralogy. K-feldspar grains are the primary source of fault rock-derived Ar. The laser provides high spatial resolution and the furnace method yields the Ar diffusion properties of fault rock matrix. Both methods yield reproducible results, but ages are difficult to interpret without an established geothermochronologic context. Fault rock 40Ar/39Ar measurements reveal: (1) closure temperatures of 140–280°C (at 100°C/Myr); (2) activation energies ranging from 33–50 kcal/mol; (3) individual K-feldspar grain ages of 55–5 Ma; (4) unanticipated and poorly understood low-temperature diffusion behavior; (5) little difference between pseudotachylyte and cataclasite matrix diffusion and age results; (6) that pre-analysis sample characterization is requisite. The diffusion properties of prepared glasses (47–84% SiO2) were also measured. Those with fault rock-like compositions yield activation energies of 25–39 kca/mol and average diffusivity of 4.63 · 10−3 cm2/sec. Network-forming Ca, Fe, and Mg partly cause certain low-temperature diffusion behaviors that, if unaccounted for, could allow an underestimation of Ar diffusion rates in some glass-bearing materials. Numerical models show that ambient temperature, grain size, and cooling rate strongly influence the Ar retention rate and interpretability of fault rock 40Ar/39Ar ages.
机译:比较并评价了从细粒催化裂隙和假速溶物中获得 40 Ar / 39 Ar年龄的炉法和激光斑点法,并根据原生岩,断层和冷却年龄成分进行了评估。这些方法适用于露头尺度,小位移,脆性分离断层(小分离或MDF)的断层岩石,该断层从脆性,大位移(> 20 km)的顶壁切下中壳岩石。 -NE,加利福尼亚州东南部的Whipple(WM)和Chemehuevi Mountains(CM)的低角度正断层(即分离)。第三纪中期延伸影响了这两个地区,从〜26 Ma到〜11-8 Ma。快速的底壁冷却始于约22 Ma。 WM-CM炉龄范围为22.0±1.3至14.6±0.6 Ma,CM激光器龄期范围为29.9±3.7至15.7±1.2 Ma。这些年龄比基质原岩的形成还年轻,并且记录有脱离断层或底盘冷却。至少映射了50个MDF;他们通常会切割所有的地下室织物。脆性MDF和断裂作用产生的断层岩在质地上相似,但WM中的一些塑性变形。机械提取断层岩石基质,进行光学研究,探测以表征大块矿物学。钾长石晶粒是断层岩石衍生的Ar的主要来源。激光提供了高空间分辨率,而熔炉法则产生了断层岩石基质的Ar扩散特性。两种方法都能产生可重复的结果,但是如果没有确定的地热年代学背景,年龄很难解释。断层岩 40 Ar / 39 Ar的测量结果表明:(1)封闭温度为140-280°C(在100°C / Myr时); (2)活化能为33-50 kcal / mol; (3)钾长石的个体年龄为55-5 Ma; (4)低温扩散行为无法预料和了解的; (5)假速溶质和分解钾长石基质扩散与年龄结果之间的微小差异; (6)必须进行分析前样品表征。还测量了制备的玻璃(47-84%SiO 2 )的扩散性能。具有断层状岩石成分的那些的活化能为25-39 kca / mol,平均扩散率为4.63·10 -3 cm 2 / sec。形成网络的Ca,Fe和Mg会部分导致某些低温扩散行为,如果无法解释,可能会低估某些含玻璃材料中Ar扩散速率。数值模型表明,环境温度,晶粒度和冷却速率对断层岩 40 Ar / 39 Ar年龄的Ar保留率和解释性有很大影响。

著录项

  • 作者

    Hazelton, Garrett Blaine.;

  • 作者单位

    University of California, Los Angeles.;

  • 授予单位 University of California, Los Angeles.;
  • 学科 Geology.; Geochemistry.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 445 p.
  • 总页数 445
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;地质学;工程材料学;
  • 关键词

  • 入库时间 2022-08-17 11:44:58

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