Despite being the largest accretionary orogen on Earth, the record of crustal growth and reworking of individual microcontinental massifs within the Central Asian Orogenic Belt (CAOB) remain poorly constrained. Here, we focus on zircon records from granitoids in the Erguna Massif to discuss its crustal evolution through time. Proterozoic–Mesozoic granitoids are widespread in the Erguna Massif, and spatiotemporal variations in their zircon εHf(t) values and TDM2(Hf) ages reveal the crustal heterogeneity of the massif. Crustal growth curve demonstrates that the initial crust formed in the Mesoarchean, and shows a step-like pattern with three growth periods: 2.9–2.7, 2.1–1.9, and 1.7–0.5 Ga. This suggests that microcontinental massifs in the e...
Numerous Early Mesozoic granitoids have been recognized from the central segment of the Central Asia...
The Eastern Erenhot ophiolitic complex (EOC) is one of the numerous fragments of oceanic lithosphere...
The juvenile component of accretionary orogenic belts has been declining since the Archean. As a res...
Despite being the largest accretionary orogen on Earth, the record of crustal growth and reworking o...
We argue that the production of mantle-derived or juvenile continental crust during the accretionary...
Accretionary orogens function as major sites for the generation of continental crust, but the growth...
This dataset includes Table S1 to S5 of the article "A Step-like Crustal Growth Pattern in Resp...
continental crust but the spatial and temporal distribution of crust generation within individual or...
The growth of the continental crust is generally believed to have been essentially completed in the ...
Studies of supercontinental cycle are mainly concentrated on the assembly, breakup and dispersal of ...
We provide new field observations and isotopic data for key areas of the Central Asian Orogenic Belt...
The Erguna block is a crustal unit located along the eastern margin of the Central Asian Orogenic Be...
A new concept of continental construction based on four main terms: (1) crustal growth, (2) crustal ...
International audienceA new concept of continental construction based on four main terms: ( 1) crust...
The Central Asian Orogenic Belt (CAOB), the largest accretionary collage on the Earth, has a complic...
Numerous Early Mesozoic granitoids have been recognized from the central segment of the Central Asia...
The Eastern Erenhot ophiolitic complex (EOC) is one of the numerous fragments of oceanic lithosphere...
The juvenile component of accretionary orogenic belts has been declining since the Archean. As a res...
Despite being the largest accretionary orogen on Earth, the record of crustal growth and reworking o...
We argue that the production of mantle-derived or juvenile continental crust during the accretionary...
Accretionary orogens function as major sites for the generation of continental crust, but the growth...
This dataset includes Table S1 to S5 of the article "A Step-like Crustal Growth Pattern in Resp...
continental crust but the spatial and temporal distribution of crust generation within individual or...
The growth of the continental crust is generally believed to have been essentially completed in the ...
Studies of supercontinental cycle are mainly concentrated on the assembly, breakup and dispersal of ...
We provide new field observations and isotopic data for key areas of the Central Asian Orogenic Belt...
The Erguna block is a crustal unit located along the eastern margin of the Central Asian Orogenic Be...
A new concept of continental construction based on four main terms: (1) crustal growth, (2) crustal ...
International audienceA new concept of continental construction based on four main terms: ( 1) crust...
The Central Asian Orogenic Belt (CAOB), the largest accretionary collage on the Earth, has a complic...
Numerous Early Mesozoic granitoids have been recognized from the central segment of the Central Asia...
The Eastern Erenhot ophiolitic complex (EOC) is one of the numerous fragments of oceanic lithosphere...
The juvenile component of accretionary orogenic belts has been declining since the Archean. As a res...