Mineral chemical composition and geodynamic significance of peridotites from Nain ophiolite, central Iran
JOURNAL OF GEODYNAMICS, vol.49, no.5, pp.261-270, 2010 (SCI-Expanded, Scopus)
- Publication Type: Article / Article
- Volume: 49 Issue: 5
- Publication Date: 2010
- Doi Number: 10.1016/j.jog.2010.01.004
- Journal Name: JOURNAL OF GEODYNAMICS
- Journal Indexes: Science Citation Index Expanded (SCI-EXPANDED), Scopus
- Page Numbers: pp.261-270
- Karadeniz Technical University Affiliated: No
Abstract
The peridotites from north of the town of Nain in central Iran consist of clinopyroxene-bearing harzburgite and Iherzolite with small lenses of dunite and chromitite pods. The Iherzolite contains aluminous spinel with a Cr number (Cr-# = Cr/[Cr +Al]) of 0.17. The Cr number of spinels in harzburgite and chromitite is 0.38-0.42 and 0.62, respectively. This shows that the Iherzolite and harzburgite resulted from <18% of partial melting of the source materials. The estimated temperature is 1100 +/- 200 degrees C for peridotites, the estimated pressure is <15 +/- 2.3 kbar for harzburgites and >16 +/- 2.3 kbar for Iherzolites and estimated f(o2) is 10(-1+/-0.5) for peridotites. Discriminant geochemical diagrams based on mineral chemistry of harzburgites indicate a supra-subduction zone (SSZ) to mid-oceanic ridge (MOR) setting for these rocks. On the basis of their Cr-#, the harzburgite and lherzolite spinels are analogous to those from abyssal peridotites and oceanic ophiolites, whereas the chromites in the chromitite (on the basis of Cr-# and boninitic nature of parental melts) resemble those from SSZ ophiolitic sequences. Therefore, the Nain ophiolite complex most likely originated in an oceanic crust related to supra-subduction zone, i.e. back arc basin. Field observations and mineral chemistry of the Nain peridotites, indicating the suture between the central Iran micro-continent (CIM) block and the Sanandaj-Sirjan zone, show that these peridotites mark the site of the Nain-Baft seaway, which opened with a slow rate of ocean-floor spreading behind the Mesozoic arc of the Sanandaj-Sirjan zone as a result of change of Neo Tethyan subduction regime during middle Cretaceous. (C) 2010 Published by Elsevier Ltd.