Published August 2009 | Version public
Journal Article

Partial melting of deeply subducted continental crust and the formation of quartzofeldspathic polyphase inclusions in the Sulu UHP eclogites

  • 1. ROR icon Chinese Academy of Geological Sciences
  • 2. ROR icon California Institute of Technology
  • 3. ROR icon Peking University

Abstract

Two types of quartzofeldspathic inclusions hosted by omphacite and garnet were identified in the Sulu UHP eclogites. The first consists of albite, quartz, and various amounts of K-feldspar. In contrast, the second consists predominantly of K-feldspar and quartz without any albite. The presence of quartzofeldspathic inclusions within the UHP mafic eclogites indicates that partial melting occurred in deeply subducted continental crust via mica dehydration melting reactions at an early stage of rapid exhumation. Such a melting event generated hydrous Na-K-Al-Si melts. These melts infiltrated into the mafic eclogite and were captured by recrystallizing garnet or omphacite, which together followed by dehydration and crystallization to form feldspar-bearing polyphase inclusions. Formation of silicate melts within the deeply subducted continental slab not only provides an excellent medium to transport both mobile (LILE) and immobile (HFSE) elements over a large distance, but also induces effective changes in the physical properties of the UHP slab. This process could be a major factor that enhances rapid exhumation of a deeply subducted continental slab.

Additional Information

© 2009 Springer. Received March 31, 2009; accepted May 14, 2009; published online June. Supported by the National Natural Science Foundation of China (Grant No. 40673027), Outlay Research Fund of Chinese Academy of Geological Sciences (Grant No.20071120101125). We thank Prof. Zheng Yongfei, Ye Kai, Yang Jianjun, Liu Fulai, and John Eiler for discussion in preparing the manuscript. We also thank Prof. Yang Jianjun and other reviewers for providing thoughtful comments that enable us to clarify our interpretations.

Additional details

Identifiers

Eprint ID
15126
DOI
10.1007/s11434-009-0426-6
Resolver ID
CaltechAUTHORS:20090817-144819738

Related works

Funding

National Natural Science Foundation of China
40673027
Chinese Academy of Geological Sciences
20071120101125

Dates

Created
2009-09-04
Created from EPrint's datestamp field
Updated
2021-11-08
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