日本地球惑星科学連合2019年大会

講演情報

[E] 口頭発表

セッション記号 S (固体地球科学) » S-MP 岩石学・鉱物学

[S-MP31] Supercontinents and Crustal Evolution

2019年5月28日(火) 10:45 〜 12:15 A08 (東京ベイ幕張ホール)

コンビーナ:Satish-Kumar Madhusoodhan(Department of Geology, Faculty of Science, Niigata University)、外田 智千(国立極地研究所)、Sajeev Krishnan(Centre for Earth Sciences, Indian Institute of Science)、小山内 康人(九州大学大学院比較社会文化研究院地球変動講座)、座長:M. Satish-Kumar(Niigata University)、外田 智千(国立極地研究所)

11:45 〜 12:00

[SMP31-05] レッサーヒマラヤの現地性堆積物層下部(1.9-1.75 Ga)に産出する火成岩の岩石学的特徴:広域的組成変化とテクトニック場の推定

*新城 竜一1安室 朝基1大浦 晃平1大城 和哉1田原 史朗1酒井 治孝2 (1.琉球大学理学部物質地球科学科、2.京都大学大学院理学研究科)

キーワード:Nepal、Lesser Himalaya、tectonic setting

We present geochemical characteristics of mafic and felsic intrusive rocks (1.9-1.75 Ga) in the Lesser Himalaya and discuss about its tectonic setting. Rocks are taken from wide range of the Lesser Himalaya.

Models of tectonic setting for these rocks are controversial, which include subduction-zone setting (Kohn et al., 2010) and continental rift setting (Sakai et al., 2013).

Analyses of immobile trace element compositions suggest that mafic rocks (metagabbro) from the eastern Nepal have within-plate (or OIB) type composition, while the rocks from central and western Nepal have chemical compositions similar to subduction-related (active continental margin) basalt. It is noted that both types occur in the western Nepal. Based on these results, we suggest that plume-related rift system is more likely tectonic setting for these mafic magmatism than arc setting. Arc-like signature in western Nepal rocks may be derived from sub-continental lithospheric mantle.

Similar regional variation in trace element compositions for felsic rocks was observed. Initial 143Nd/144Nd and 176Hf/177Hf of felsic rocks are lower than those of mafic rocks; thus crustal component might involved significantly in generation of felsic magmas.