Origin of sanukitoid and hornblendite enclaves in the dajitu pluton from the Yinshan Block, North China Craton: Product of Neoarchaean ridge subduction?

29Citations
Citations of this article
16Readers
Mendeley users who have this article in their library.
Get full text

Abstract

A Neoarchaean sanukitoid pluton that was intruded into the base of the Guyang greenstone belt in the Yinshan Block of the North China Craton hosts a number of hornblendite enclaves. Geochemically, the pluton is characterized by high MgO, Mg#, Cr, Ni, large-ion lithophile element (LILE), and heavy rare earth element (HREE) contents and low TiO2 and highfield strength element (HFSE) contents, and has relatively low Sr/Y ratios and negative Eu anomalies. Whole-rock Sr-Nd isotopic analyses indicate that it has εNd(t) values of +1.4 to +2.0. These geochemical and isotopic characteristic suggest that the sanukitoid was formed under a low-pressure and high-temperature environment by slab melting and assimilation of hornblendite enclaves. The hornblendite enclaves show high MgO, Mg#, Cr, and Ni contents, high and variable K2O, LREE, and Th contents, enrichment in LILEs and LREEs, and depletion in HFSEs. They have high Y contents and relatively low Sr/Y values, strongly negative Eu anomalies, and whole-rock εNd(t) values of +1.0 to +1.9. The geochemical and isotopic characteristics indicate that these enclaves might have been derived from a mixed source of an enriched mantle, metasomatized by melts expelled from subducted sediments in a high-temperature, low-pressure environment. To explain these characteristics, a ridge subduction model is proposed for the formation of the sanukitoid and hornblendite in the Yinshan Block in the Neoarchaean.

Cite

CITATION STYLE

APA

Ma, X., Fan, H. R., Santosh, M., Liu, X., & Guo, J. H. (2014). Origin of sanukitoid and hornblendite enclaves in the dajitu pluton from the Yinshan Block, North China Craton: Product of Neoarchaean ridge subduction? International Geology Review, 56(10), 1197–1212. https://doi.org/10.1080/00206814.2014.929055

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free