HAN Chenhua, YE Ying, PAN Yiwen, QIN Huawei, WU Guanghai, CHEN Chen-Tung Arthur. Spatial distribution pattern of seafloor hydrothermal vents to the southeastern Kueishan Tao offshore Taiwan Island[J]. Acta Oceanologica Sinica, 2014, 33(4): 37-44. doi: 10.1007/s13131-014-0405-x
Citation: HAN Chenhua, YE Ying, PAN Yiwen, QIN Huawei, WU Guanghai, CHEN Chen-Tung Arthur. Spatial distribution pattern of seafloor hydrothermal vents to the southeastern Kueishan Tao offshore Taiwan Island[J]. Acta Oceanologica Sinica, 2014, 33(4): 37-44. doi: 10.1007/s13131-014-0405-x

Spatial distribution pattern of seafloor hydrothermal vents to the southeastern Kueishan Tao offshore Taiwan Island

doi: 10.1007/s13131-014-0405-x
  • Received Date: 2013-07-01
  • Rev Recd Date: 2013-11-21
  • Investigations of the diffusion activities both within and outside the seafloor hydrothermal vents, as well as related mineral genesis, have been one of the key focuses of ocean biogeochemistry studies. Many hydrothermal vents are distributed close to the southern Okinawa Trough on the less-than-30-m deep shallow seafloor off Kueishan Tao, northeast of Taiwan Island. Investigations of temperature, pH and Eh at four depths of hydrothermal plume were carried out near Kueishan Tao at the white (24.83°N, 121.96°E) and yellow (24.83°N, 121.96°E) vents. An 87 h of temperature time series observation-undertaken near the white vent showed that tide is the main factor affecting the background environment. Based on the observed data, 3-dimensional sliced diffusion fields were obtained and analyzed. It was concluded that the plume diffused mainly from north to south due to ebb tide. The yellow vent's plume could effect as far as the white vent surface. From the temperature diffusion field, the vortices of the plume were observed. The Eh negative abnormality was a better indicator to search for hydrothermal plumes and locate hydrothermal vents than high temperature and low pH abnormalities.
  • loading
  • Chen Chentung, Wang Bingjye, Huang Jungfu, et al. 2005. Investigationinto extremely acidic hydrothermal fluids off Kueishan Tao, Taiwan,China. Acta Oceanologica Sinica, 24(1): 125-133
    Chen Yuegau, Wu Wenshoung, Chen Chenghong, et al. 2001. A date forvolcanic-eruption inferred from a siltstone xenolith. QuaternaryScience Review, 20(5-9): 869-873
    Chen Chentung, Zeng Zhigang, Kuo Fuwen, et al. 2005. Tide-influencedacidic hydrothermal system offshore NE Taiwan. Chemical Geology,224(1-3): 69-81
    Connelly D P, Jonathan T C, Bramley J M, et al. 2012. Hydrothermal ventfields and chemosynthetic biota on the world's deepest seafloorspreading centre. Nature Communication, 3: 620, doi: 10.1038/ncomms1636
    Ding Kang, Seyfried W E, Zhang Zhong, et al. 2005. The in situ pH ofhydrothermal fluids at mid-ocean ridges. Earth Planet Science Letter, 237: 167-174
    Douglas P C, Jonathan T C, Bramley J M, et al. 2012. Hyderthermal ventfields and chemosynthetic biota on the world's deepest seafloorspreading centre. Nature Communications, 3: 620, doi: 10.1038/ncomms1636
    Gillespie L J. 1920. Reduction potentials of bacterial cultures and of waterloggedsoils. Soil Science, 9: 199-216
    Han Chenhua, Pan Yiwen, Ye Ying. 2009. CO2 microelectrode based onZn-Al-LDH-ion carrier and its characterization. Journal of TropicalOceanography (in Chinese), 28(4): 35-41
    Hautala S, Johnson H P, Pruis M, et al. 2012. Low-temperature hydrothermalplumes in the near-bottom boundary layer at Endeavoursegment, Juan de Fuca Ridge. Oceanography, 25(1): 192-195
    Kelvin G S. 1998. A new spin on hydrothermal plumes. Science, 280:1034-1035
    Lee H F, Yang T F, Lan T F, et al. 2005. Fumarolic gas composition of theTatun Volcano Group, Northern Taiwan. Terrestrial, Atmosphericand Oceanic Sciences, 16(4): 843-864
    Lilley M D, Feely R A, Trefry J H. 1995. Chemical and biochemicaltransformations in hydrothernal plumes. In: Humphris S E, ZierenbergR H, Mullineaux L S, et al., eds. Seafloor HydrothermalSystems: Physical, Chemical, Biological and Gological Interactions.Geophysical Monograph 91. Washington, DC: AmericanGeophysical Union, 369-391
    Liu Changhua, Zeng Zhigang. 2007. Sulfur isotope of submarine sulfurchimneys near Kueishan Island. Oceanologia et Limnologia Sinica(in Chinese), 38(2): 118-123
    Liu Changhua, Zeng Zhigang, Yin X B, et al. 2006. Basic characters ofnative sulfur chimneys near the sea off Kueishantao from theNortheastern Taiwan. Journal of Oceanography in Taiwan Strait(in Chinese), 25(3): 309-317
    Liu Baohua, Zheng Yanpeng, Wu Jinglong, et al. 2005. The topographicalcharacteristics in the area off eastern Taiwan Island and theirtectonic implication. Acta Oceanologica Sinica (in Chinese),27(5): 82-91
    Marumo K, Hattori K H. 1999. Seafloor hydrothermal clay alteration atJade in the back-arc Okinawa Trough: mineralogy, geochemistryand isotope characteristics. Geochimica et Cosmochimica Acta,63(18): 2785-2804
    Pan Yiwen, Wu Guanghai, Qin Huawei, et al. 2012. The research on hydrothermalvent detection with the multiparameter chemicalsensor. Acta Oceanologica Sinica (in Chinese), 34(2): 179-184
    Pan Yiwen, Ye Ying, Han Chenhua. 2010. An improved approach of pHelectrode preparation for application in the deep-sea environment.Acta Oceanologica Sinica (in Chinese), 32(2): 73-79
    Qin Huawei, Ying Qiwei. 2012. Integration of chemical sensors chainand its practical application around the Kueishan Tao hydrothermaldiffusion flow. Applied Technology (in Chinese), 4: 171-172
    Stranne C, Sohn R A, Liljebladh B, et al. 2010. Analysis and modeling ofhydrothermal plume data acquired from the 85°E segment of theGakkel Ridge. Journal of Geophysical Research, 115: 1-17, doi: 10.1029/2009JC005776
    Tarasov V G, Gebruk A V, Mironov A N, et al. 2005. Deep-sea and shallow-water hydrothermal vent communities: two different phenomena.Chemical Geology, 224: 5-39
    Tilling R I. 1989. Volcanic hazards and their mitigation: Progress andproblems. Reviews of Geophysics, 27(2): 237-269
    Wang Ming, Sheng Y, Madou M. 2002. A long-term stable iridium oxidepH electrode. Sensor and Actuators B—Chemical, 81(2-3):313-315
    Yang T F, Chuang P C, Lin S, et al. 2006. Methane venting in gas hydratepotential area offshore of SW Taiwan: evidence of gas analysisof water column samples. Terrestrial, Atmospheric and OceanicSciences, 17(4): 933-950
    Yang Liyang, Hong Huasheng, Guo Weidong, et al. 2012. Absorptionand fluorescence of dissolved organic matter in submarine hydrothermalvents off NE Taiwan. Marine Chemistry, 128-129:64-71
    Yang T F, Lan T F, Lee H F, et al. 2005. Gas compositions and heliumisotopic ratios of fluid samples around Kueishantao, NE offshoreTaiwan and its tectonic implications. Geochemical Journal,39(5): 469-480
    Zeng Zhigang, Liu Changhua, Chen Chentung, et al. 2007. Origin ofa native sulfer chimney in the Kueishantao hydrothermal field,offshore northeast Taiwan. Science China Ser D—Earth Science,50(11): 1746-1753
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (1344) PDF downloads(1622) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return