The Central Asian Orogenic Belt (CAOB) is the world's largest Phanerozoic accretionary orogen and is the most important site for juvenile crustal growth in the Phanerozoic. In this work, we employed U-Pb zircon geochronology to identify the early and middle Mesozoic intraplate granitic intrusive events in the Chinese Altai segment of the southern CAOB in order to better understand the crustal architecture of the CAOB. We also used whole-rock geochemical, Sr-Nd isotopic and zircon Hf isotopic data to constrain the generation for these granitic rocks and to evaluate the implications for vertical crustal growth in this region. The Early Mesozoic granitic intrusions were emplaced between 220 and 200 Ma in the central Altai “microcontinental ter...
A compilation of U-Pb age, geochemical and isotopic data for granitoid plutons in the southern Centr...
It is generally considered that there are different continental compositions between a subductional–...
The Chinese Altai orogen is a typical domain of the Central Asian Orogenic Belt and in previous synt...
Numerous Early Mesozoic granitoids have been recognized from the central segment of the Central Asia...
Zircon U-Pb dating and whole-rock major oxide, trace element and Nd-Sr isotope compositions have bee...
The Central Asian Orogenic Belt (CAOB), the largest accretionary collage on the Earth, has a complic...
continental crust but the spatial and temporal distribution of crust generation within individual or...
The Altai orogen forms the southern part of the Central Asian Orogenic Belt (CAOB), the world's larg...
The Chinese Altai in northwestern Xinjiang has numerous outcrops of granitoids which provide critica...
Tectonic-magmatic reworking of accretionary wedges is a key process responsible for differentiation ...
The Central Asian Orogenic Belt (CAOB), also known as Altaids, is the largest and probably the least...
This study was supported by funding from the Strategic Priority Research Program (B) of the Chinese ...
The Chinese Altai experienced intensive mafic and felsic magmatism during the Middle Paleozoic, whic...
The Central Asian Orogenic Belt (CAOB) or Altaids contains several large porphyry Cu(-Au-Mo) and Au(...
the Siberian craton to the north and the TarimNorth China cratons to the south, is a complex collage...
A compilation of U-Pb age, geochemical and isotopic data for granitoid plutons in the southern Centr...
It is generally considered that there are different continental compositions between a subductional–...
The Chinese Altai orogen is a typical domain of the Central Asian Orogenic Belt and in previous synt...
Numerous Early Mesozoic granitoids have been recognized from the central segment of the Central Asia...
Zircon U-Pb dating and whole-rock major oxide, trace element and Nd-Sr isotope compositions have bee...
The Central Asian Orogenic Belt (CAOB), the largest accretionary collage on the Earth, has a complic...
continental crust but the spatial and temporal distribution of crust generation within individual or...
The Altai orogen forms the southern part of the Central Asian Orogenic Belt (CAOB), the world's larg...
The Chinese Altai in northwestern Xinjiang has numerous outcrops of granitoids which provide critica...
Tectonic-magmatic reworking of accretionary wedges is a key process responsible for differentiation ...
The Central Asian Orogenic Belt (CAOB), also known as Altaids, is the largest and probably the least...
This study was supported by funding from the Strategic Priority Research Program (B) of the Chinese ...
The Chinese Altai experienced intensive mafic and felsic magmatism during the Middle Paleozoic, whic...
The Central Asian Orogenic Belt (CAOB) or Altaids contains several large porphyry Cu(-Au-Mo) and Au(...
the Siberian craton to the north and the TarimNorth China cratons to the south, is a complex collage...
A compilation of U-Pb age, geochemical and isotopic data for granitoid plutons in the southern Centr...
It is generally considered that there are different continental compositions between a subductional–...
The Chinese Altai orogen is a typical domain of the Central Asian Orogenic Belt and in previous synt...