연세대학교 · 지구·행성과학
M. 산쇼프 교수의 연구실은 태고기에서 고생대에 이르는 구조적 변동과 금속 축적 메커니즘을 해석하기 위해 지구물리학적 데이터와 오로니크 금광체의 고체-유체 상호작용을 융합한 연구를 수행합니다. 주로 북중국 크라톤의 지각 구조와 맨틀 내 구조적 잔재를 분석하며, 메소조이크 시대의 금광체 형성과 관련된 유체의 기원 및 이동 경로를 규명하는 데 초점을 맞추고 있습니다. 특히 변성유체가 금광체 형성에 미치는 영향과 그 기원에 대한 기초적 메커니즘을 탐구하고 있습니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
An evaluation of recent S-wave receiver functions, S-wave velocities and two versions of P-wave tomographic images along various transects in the North China Craton provides some clues on the subduction-collision history of the different crustal blocks and their final amalgamation within the Paleoproterozoic Columbia supercontinent. Interpretation of a N–S seismic section of the craton suggests thick slab debris sinking to various depths in the mantle. The W–E seismic corridors show the preserva
The ca. 126–120 Ma Au deposits of the Jiaodong Peninsula, eastern China, define the country's largest gold province with an overall endowment estimated as >3000 t Au. The vein and disseminated ores are hosted by NE- to NNE-trending brittle normal faults that parallel the margins of ca. 165–150 Ma, deeply emplaced, lower crustal melt granites. The deposits are sited along the faults for many tens of kilometers and the larger orebodies are associated with dilatational jogs. Country rocks to the gr
Although the term orogenic gold deposit has been widely accepted for all gold-only lode-gold deposits, with the exception of Carlin-type deposits and rare intrusion-related gold systems, there has been continuing debate on their genesis. Early syngenetic models and hydrothermal models dominated by meteoric fluids are now clearly unacceptable. Magmatic-hydrothermal models fail to explain the genesis of orogenic gold deposits because of the lack of consistent spatially – associated granitic intrus
With very few exceptions, orogenic gold deposits formed in subduction-related tectonic settings in accretionary to collisional orogenic belts from Archean to Tertiary times. Their genesis, including metal and fluid source, fluid pathways, depositional mechanisms, and timing relative to regional structural and metamorphic events, continues to be controversial. However, there is now general agreement that these deposits formed from metamorphic fluids, either from metamorphism of intra-basinal rock