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首页> 外文期刊>International Geology Review >Archean Regional Metamorphism of the Isua Supracrustal Belt, Southern West Greenland: Implications for a Driving Force for Archean Plate Tectonics
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Archean Regional Metamorphism of the Isua Supracrustal Belt, Southern West Greenland: Implications for a Driving Force for Archean Plate Tectonics

机译:西格陵兰南部伊苏阿上壳带的太古代区域变质作用:对太古代板块构造动力的影响

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摘要

The Isua supracrustal belt (approx 3.8 Ga) constitutes the oldest accretionary complex in the world Petrochemical and geothermobarometric studies of more than 1500 rock samples of the Isua belt have enabled us to estimate the extent of regional metamorphism, the petrotectonic environment, and the subduction- zone geothermal gradient in the Archean. The following line of evidence indicates progressive, prograde metamorphism from greenschist (Zone A) through albite-epidote-amphibolite (Zone B) to amphibolite facies (Zones C and D) in the northeastern part of the Isua supracrustal belt: (1) the systematic change of mineral paragenesis in metabasites and metapelites; (2) progressive change of the composition of major metamorphic minerals, including plagioclase, amphibole, chlorite, epidote, and garnet; (3) normal zoning of amphibole and garnet; and (4) the absence of relict minerals of high-grade amphibolitic metamorphism even in the lowest metamorphic zone. Metabasites of the Isua belt vary extremely in Mg#, causing a complex mineral paragenesis throughout the area. For example, a high FeO content of metabasites expands the stability field of hornblende to both lower and higher grades. The compositional and mineralogical characteristics above also indicate that the Isua supracrustal belt underwent a single regional metamorphic event, involving minor contact metamorphism and mylonitization; however, weak ocean-floor metamorphism and low-grade regional metamorphism during accretion cannot be ruled out.Metamorphic pressures and temperatures are estimated to be 5-7 kbar from garnet-hornblende-plagioclase-quartz geobarometry and 380-550 deg C from garnet-biotite geothermometry in Zones B to D. These P-T estimates indicate an intermediate P/T ratio metamorphic facies series. Geological investigations and chronological constraints of the Isua metamorphic belt indicate that the regional metamorphism was related to the Subduction of Archean lithosphere, and records a geothermal gradient for the Archean subduction zone that is much higher than geotherms for Phanerozoic subduction zones. The high geothermal gradient may have resulted from the young age of subducted lithosphere and high potential temperature of the mantle. The Archean high geothermal gradient led to melting of thick oceanic crust in a thin, descending oceanic plate, creating many huge granitic (tonalite-trondhjemite-granodiorite (TTG)) batholiths. Slab melting changed the oceanic crust (density = 3.07) to denser garnet-bearing assemblages (density = 3.55), implying that TTG melt extraction provided a potential driving force for Archean plate tectonics.
机译:Isua地壳上带(约3.8 Ga)构成了世界上最古老的增生复合物。对Isua带的1500多个岩石样品进行石油化学和地热气压研究,使我们能够估算区域变质的程度,岩石构造环境以及俯冲作用。区的太古宙地热梯度。以下证据表明,在伊苏阿上壳带东北部,从绿片岩(A区)到钠长石-埃皮德-闪石(B区)到角闪石相(C和D区)进行了渐进的变质作用:(1)系统的变质岩和变质岩中矿物共生的变化; (2)主要变质矿物的组成逐渐变化,包括斜长石,闪石,绿泥石,山竹和石榴石; (3)闪石和石榴石的正常分区; (4)即使在最低的变质带,也没有高等级两性变质的遗留矿物。伊苏阿河带的新生代的Mg#差异很大,在整个地区造成复杂的矿物共生作用。例如,高含量的FeO含量将角闪石的稳定性范围扩展到较低和较高等级。上面的成分和矿物学特征还表明,伊苏阿上壳带经历了一次区域性变质事件,涉及较小的接触变质作用和髓鞘化作用。然而,不能排除增生过程中的弱海底变质和低等级的区域变质。据石榴石-角闪石-斜长石-石英地理测算,其变质压力和温度估计为5-7 kbar,而从石榴石-变质压力和温度估计为380-550℃。 B至D区的黑云母地热仪。这些PT估算值表明存在中等的P / T比变质相系列。伊苏阿变质带的地质调查和时间约束表明,该区域变质与古宙俯冲带俯冲有关,并记录了古宙俯冲带的地热梯度远高于生代俯冲带的地热。高地热梯度可能是由俯冲岩石圈的年轻年龄和地幔的高潜在温度引起的。太古代的高地热梯度导致厚薄的海洋地壳在一块薄薄的下降的海洋板块中融化,从而形成了许多巨大的花岗岩(辉绿岩-长白云母-碎屑闪长岩(TTG))岩床。板坯融化将大洋地壳(密度= 3.07)改变为更密集的石榴石组合(密度= 3.55),这意味着TTG熔体提取为太古代板块构造提供了潜在的驱动力。

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