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基于单颗粒锆石蒸发法精确测年的南非巴伯顿山地早期太古代花岗岩-绿岩演化年代学

Chronology of early Archaean granite-greenstone evolution in the Barberton Mountain Land, South Africa, based on precise dating by single zircon evaporation.

作者信息

Krüner A, Byerly G R, Lowe D R

机构信息

Institut für Geowissenschaften, Universität Mainz, FRG.

出版信息

Earth Planet Sci Lett. 1991 Apr;103(1-4):41-54. doi: 10.1016/0012-821x(91)90148-b.

Abstract

We report precise 207Pb/206Pb single zircon evaporation ages for low-grade felsic metavolcanic rocks within the Onverwacht and Fig Tree Groups of the Barberton Greenstone Belt (BGB), South Africa, and from granitoid plutons bordering the belt. Dacitic tuffs of the Hooggenoeg Formation in the upper part of the Onverwacht Group yield ages between 3445 +/- 3 and 3416 +/- 5 Ma and contain older crustal components represented by a 3504 +/- 4 Ma old zircon xenocryst. Fig Tree dacitic tuffs and agglomerates have euhedral zircons between 3259 +/- 5 and 3225 +/- 3 Ma in age which we interpret to reflect the time of crystallization. A surprisingly complex xenocryst population in one sample documents ages from 3323 +/- 4 to 3522 +/- 4 Ma. We suspect that these xenocrysts were inherited, during the passage of the felsic melts to the surface, from various sources such as greenstones and granitoid rocks now exposed in the form of tonalite-trondhjemite plutons along the southern and western margins of the BGB, and units predating any of the exposed greenstone or intrusive rocks. Several of the granitoids along the southern margin of the belt have zircon populations with ages between 3490 and 3440 Ma. coeval with or slightly older than Onverwacht felsic volcanism, while the Kaap Valley pluton along the northwestern margin of the belt is coeval with Fig Tree dacitic volcanism. These results emphasize the comagmatic relationships between greenstone felsic volcanic units and the surrounding plutonic suites. Some of the volcanic plutonic units contain zircon xenocrysts older than any exposed rocks. These indicate the existence of still older units, possibly stratigraphically lower and older portions of the greenstone sequence itself, older granitoid intrusive rocks, or bodies of older, unrelated crustal material. Our data show that the Onverwacht and Fig Tree felsic units have distinctly different ages and therefore do not represent a single, tectonically repeated unit as proposed by others. Unlike the late Archaean Abitibi greenstone belt in Canada, which formed over about 30 Ma. exposed rocks in the BGB formed over a period of at least 220 Ma. The complex zircon populations encountered in this study imply that conventional multigrain zircon dating may not accurately identify the time of felsic volcanic activity in ancient greenstones. A surprising similarity in rock types, tectonic evolution, and ages of the BGB in the Kaapvaal craton of southern Africa and greenstones in the Pilbara Block of Western Australia suggests that these two terrains may have been part of a larger crustal unit in early Archaean times.

摘要

我们报告了南非巴伯顿绿岩带(BGB)翁弗瓦赫特群和菲格特里群内低级长英质变质火山岩以及该带周边花岗岩类岩体精确的207Pb/206Pb单颗粒锆石蒸发年龄。翁弗瓦赫特群上部霍赫格诺格组的英安质凝灰岩年龄在3445±3至3416±5百万年之间,并且包含由一颗3504±4百万年的古老锆石捕虏晶所代表的更古老地壳组分。菲格特里英安质凝灰岩和集块岩具有年龄在3259±5至3225±3百万年之间的自形锆石,我们将其解释为反映了结晶时间。一个样品中令人惊讶地复杂的捕虏晶群体记录了3323±4至3522±4百万年的年龄。我们怀疑这些捕虏晶是在长英质熔体上升至地表的过程中,从各种源区继承而来的,这些源区比如绿岩以及现在以英云闪长岩 - 奥长花岗岩岩体形式出露在BGB南缘和西缘的花岗岩类岩石,还有早于任何已暴露绿岩或侵入岩的单元。该带南缘的几个花岗岩类具有年龄在3490至3440百万年之间的锆石群体,与翁弗瓦赫特长英质火山活动同时期或略早,而该带西北缘的卡普谷岩体与菲格特里英安质火山活动同时期。这些结果强调了绿岩长英质火山单元与周边深成岩套之间的同源岩浆关系。一些火山深成单元包含比任何已暴露岩石都更古老的锆石捕虏晶。这些表明存在更古老的单元,可能是绿岩序列本身地层上更低且更古老的部分、更古老的花岗岩类侵入岩或更古老的、不相关地壳物质体。我们的数据表明,翁弗瓦赫特和菲格特里长英质单元具有明显不同的年龄,因此并不像其他人所提出的那样代表一个单一的、构造重复的单元。与在约30百万年时间内形成的加拿大晚太古代阿比蒂比绿岩带不同,BGB中的已暴露岩石形成时间至少跨越220百万年。本研究中遇到的复杂锆石群体意味着传统的多颗粒锆石定年可能无法准确确定古代绿岩中长英质火山活动的时间。南非卡普瓦尔克拉通的BGB与西澳大利亚皮尔巴拉地块的绿岩在岩石类型、构造演化和年龄上惊人的相似性表明,在太古代早期这两个地区可能是一个更大地壳单元的一部分。

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