The P–T–X conditions of staurolite-garnet metabasites, NW Iran: Implications for metamorphism during Arabia-Eurasia collision

IF 1.7 Q3 GEOSCIENCES, MULTIDISCIPLINARY
Monir Modjarrad , Donna L. Whitney , Hadi Omrani
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Abstract

The staurolite-bearing Avajiq metabasites (AMB) crop out near the NW border of Iran with Turkey and contain the peak assemblage garnet + Ca-amphibole + staurolite + biotite + chlorite1 + ilmenite. The AMB record peak pressure–temperature (P-T) conditions of >1 GPa at ∼650 °C; the moderately high pressure is consistent with the presence of staurolite in metabasalt. Garnets exhibit a weak prograde zoning, with relatively homogenous cores and a slight increase in Mg and decrease in Ca, Fe, and Mn toward the rim, consistent with garnet growth during a clockwise P-T path. Texturally late margarite + biotite + muscovite correspond to retrograde P-T conditions of ∼0.5 GPa at ∼500 °C. This stage was followed by further retrogression under greenschist facies conditions recorded by late pumpellyite + paragonite ± calcite. Based on the MORB-like composition of the AMB, it has been unclear whether the metabasites are associated with Neo-Tethyan ophiolites in the area or formed within a continental setting. However, the petrologic association of metabasites with micaschist, gneiss and marble and upper amphibolite facies conditions of metamorphism indicate that the basaltic rocks likely metamorphosed during Arabia-Eurasia continental collision, following consumption of the intervening Neo-Tethys Ocean and emplacement of the ophiolitic rocks in the region.

Abstract Image

伊朗西北部白云石-石榴石偏绿岩的 P-T-X 条件:阿拉伯-欧亚大陆碰撞期间变质作用的影响
含辉石的阿瓦吉克偏绿岩(AMB)分布在伊朗西北部与土耳其交界处附近,含有石榴石+钙闪石+辉石+黑云母+绿帘石1+钛铁矿的峰值组合。AMB 记录的峰值压力-温度(P-T)条件为 >1 GPa,温度为 ∼ 650 °C;适度的高压与元青石中存在的辉石相一致。石榴石表现出微弱的顺行分带,具有相对均匀的核心,镁含量略有增加,而Ca、Fe和Mn含量则向边缘减少,这与石榴石在顺时针P-T路径中的生长一致。从质地上看,晚期的麦饭石+斜长石+黝帘石对应于 ∼500 °C 时 ∼0.5 GPa 的逆行 P-T 条件。在这一阶段之后,在绿帘石面条件下的进一步逆退由晚期的普氏橄榄石+副橄榄石±方解石记录下来。基于 AMB 的 MORB 类成分,人们一直不清楚这些偏闪长岩是与该地区的新泰西岩相有关,还是在大陆环境中形成的。然而,偏闪长岩与云母岩、片麻岩和大理岩的岩石学关联以及变质作用的上闪长岩面条件表明,玄武岩很可能是在阿拉伯-欧亚大陆碰撞期间,在新特提斯洋被侵蚀和该地区蛇绿岩被置换之后变质形成的。
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来源期刊
Journal of Asian Earth Sciences: X
Journal of Asian Earth Sciences: X Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
3.40
自引率
0.00%
发文量
53
审稿时长
28 weeks
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