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Talc-beating serpentinized peridotites from the southern Mariana forearc: implications for aseismic character within subduction zones
引用本文:汪小妹,曾志刚,刘长华,陈俊兵,殷学博,王晓媛,陈代庚,张国良,陈帅,李康,欧阳荷根.Talc-beating serpentinized peridotites from the southern Mariana forearc: implications for aseismic character within subduction zones[J].中国海洋与湖沼学报,2009,27(3):667-673.
作者姓名:汪小妹  曾志刚  刘长华  陈俊兵  殷学博  王晓媛  陈代庚  张国良  陈帅  李康  欧阳荷根
摘    要:

关 键 词:马里亚纳海沟  蛇纹石化  滑石粉  橄榄岩  俯冲带  抗震性  IBM  矿物质

Talc-bearing serpentinized peridotites from the southern Mariana forearc: implications for aseismic character within subduction zones
Wang,Xiaomei,Zeng,Zhigang,Liu,Changhua,Chen,Junbing,Yin,Xuebo,Wang,Xiaoyuan,Chen,Daigeng,Zhang,Guoliang,Chen,Shuai,Li,Kang,Ouyang,Hegen.Talc-bearing serpentinized peridotites from the southern Mariana forearc: implications for aseismic character within subduction zones[J].Chinese Journal of Oceanology and Limnology,2009,27(3):667-673.
Authors:Wang  Xiaomei  Zeng  Zhigang  Liu  Changhua  Chen  Junbing  Yin  Xuebo  Wang  Xiaoyuan  Chen  Daigeng  Zhang  Guoliang  Chen  Shuai  Li  Kang  Ouyang  Hegen
Institution:[1]Key Laboratory of Marine Geology and Environment, Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, China [2]Graduate School of Chinese Academy of Sciences, Beijing 100049, China [3]Geological Brigade of Hydrogeology and Engineering Geology, Zhejiang Geological Prospecting Bureau, Ningbo, 315012, China
Abstract:

The serpentinized peridotites overlying the subducted zones in the Izu-Bonin-Mariana (IBM) arc system have been interpret as the cause of the low-velocity layer identified beneath the IBM froearc, in turn few earthquakes occurred along the plate boundary. Chrysotile, which is a low temperature and highly hydrated phase of serpentine with low frictional strength, has been suggested as the low velocity material in the serpentinized peridotites, besides, brucite is inferred to be likely conducive to stable sliding. However, such idea encounters challenging in our serpentinized peridotites from the southern Mariana forearc, which absent both the above minerals. The presence of talc, which characterized by its weak, low-friction and inherently stable sliding behavior, provides new clue. Here we report the occurrence of talc in serpentinized peridotites collected from the landward trench slope of the southern Mariana forearc. We infer that talc is mainly forming as a result of the reaction of serpentine minerals with silica-saturated fluids released from the subducting slab, and talc also occurs as talc veins sometimes. Due to its unique physical properties, talc may therefore play a significant role in aseismic slip in the IBM subduction zone.

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