Citation: | TAO Chunhui, WU Guanghai, DENG Xianming, QIU Zhongyan, HAN Chenhua, LONG Yanmei. New discovery of seafloor hydrothermal activity on the Indian Ocean Carlsberg Ridge and Southern North Atlantic Ridge—progress during the 26th Chinese COMRA cruise[J]. Acta Oceanologica Sinica, 2013, 32(8): 85-88. doi: 10.1007/s13131-013-0345-x |
Cao Zhimin, Cao Hong, Tao Chunhui, et al. 2012. Rare earth element geochemistry of hydrothermal deposits from Southwest Indian Ridge. Acta Oceanologica Sinica, 31(2): 62-69
|
Gamo T,Nakayama E, Shitashima K, et al. 1996. Hydrothermal plumes at the Rodriguez triple junction, Indian ridge. Earth and Planetary Science Letters, 142(1-2): 261-270
|
Gamo T, Chiba H, Yamanaka T, et al. 2001. Chemical characteristics of newly discovered black smoker fluids and associated hydrothermal plumes at the Rodriguez Triple Junction, Central Indian Ridge. Earth and Planetary Science Letters, 193(3-4): 371-379
|
Haase K M, Koschinsky A, Petersen S, et al. 2009. Diking, young volcanism and diffuse hydrothermal activity on the southern Mid-Atlantic Ridge: The Lilliput field at 9°33′S.Marine Geology, 266(1-4): 52-64
|
Mercuriev S, Patriat P, Sochevanova N. 1996. Evolution de la dorsale de Carlsberg: évidence pour une phase d′expansion très lente entre 40 et 25 Ma (A18 à A7). Oceanologica Acta, 19: 1-13
|
Mudholkar A V, Kodagali V N, Raju K A K, et al. 2002. Geomorphological and petrological observations along a segment of slowspreading Carlsberg Ridge. Current Science, 82(8): 982-989
|
Murton B J, Baker E T, Sands C M, et al. 2006. Detection of an unusually large hydrothermal event plume above the slow-spreading Carlsberg Ridge: NW Indian Ocean. Geophysical research letters, 33(10): L10608
|
Raju K A K. 2008. Recent cruise onboard R/V Sonne to the Carlsberg Ridge and the Andaman Sea. InterRidge News, 17: 34-35
|
Raju K A K, Kodagali V N, Fujimoto H. 1998. Three dimensional gravity and magnetic studies over a segment of the Carlsberg Ridge, Indian Ocean. 35th Annual Convention of Indian Geophysical Union held at National Institute of Oceanography, Goa. 29-30
|
Ray D, Mirza I H, Prakash L S, et al. 2008. Water-column geochemical anomalies associated with the remnants of amega plume: A case study after CR-2003 hydrothermal event in Carlsberg Ridge, NWIndian Ocean. Current Science, 95: 355-360
|
Ray D, Raju K A K, Baker E T, et al. 2012. Hydrothermal plumes over the Carlsberg Ridge, Indian Ocean. Geochemistry Geophysics Geosystems, 13(null): Q1009
|
Semp J C, Klein E M. 1995. New insights in crustal accretion expected fromIndian Ocean spreading centres. Eos, 76(11): 113-116
|
Tao Chunhui, Li Huaiming, Huang Wei, et al. 2011a. Mineralogical and geochemical features of sulfide chimneys from the 49°39′E hydrothermal field on the Southwest Indian Ridge and their geological inferences. Chinese Science Bulletin, 56(26): 2828-2838
|
Tao Chunhui, Li Huaiming, Yang Yaoming, et al. 2011b. Two hydrothermal fields found on the Southern Mid-Atlantic Ridge. Science China (Earth Sciences), 54(9): 1302-1303
|
Tao Chunhui, Lin Jian, Guo Shiqin, et al. 2004. First discovery and investigation of a high-temperature hydrothermal vent field on the ultra-slow spreading Southwest Indian Ridge. AGU fall meeting (abstract)
|
Tao Chunhui, Lin Jian, Guo Shiqin, et al. 2007. The Chinese DY115- 19 cruise: Discovery of the first active hydrothermal vent field at the ultraslowspreading Southwest Indian Ridge. InterRidge News, 16: 25-26
|
Tao Chunhui, Lin Jian, Guo Shiqin, et al. 2012. First active hydrothermal vents on an ultraslow-spreading center: Southwest Indian Ridge. Geology, 40(1): 47-50
|
Tao Chunhui, Lin Jian, Wu Guanghai, et al. 2008. First Active Hydrothermal Vent Fields Discovered at the Equatorial Southern East Pacific Rise. AGU fallmeeting (abstract)
|
TiveyMK,Humphris S E, Thompson G, et al. 1995. Deducing patterns of fluid flow and mixing within the TAG active hydrothermal mound using mineralogical and geochemical data. Journal of Geophysical Research, 100(B7): 12512-12527
|
Van Dover C L,Humphris S E, Fornari D, et al. 2001. Biogeography and ecological setting of Indian Ocean hydrothermal vents. Science, 294(5543): 818-823
|