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Detection of methane plumes in the water column of Losatchev hydrothermal vent field, Mid-Atlantic Ridse
作者姓名:ZHOU  HuaiYang  WU  ZiJun  PENG  XiaoTong  JIANG  Lei  TANG  Song
作者单位:[1]Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou 510640, China [2]Institute of Polar Environment, University of Science and Technology of China, Hefei 230026, China
基金项目:Supported by Key Project of the National Natural Science Foundation of China (Grant No. 40473032), and the National Natural Science Foundation of China (Grant Nos. 40532011 and 40403004)
摘    要:During DY105-17 cruise onboard the PJV "Da Yang Yi Hao" in 2005, methane concentrations in the water column above Logachev hydrothermal vent field were measured by applying stripping/trapping-gas chromatographic (GC) and the distinct methane plumes were detected. Results show that the background methane concentration within the Logachev area is from 1.05 nmol/L to 1.68 nmol/L, significantly higher than the background level of the Atlantic abyssal plain of 0.4-0.5 nmol/L, suggesting that hydrothermal venting is a major source of dissolved methane to the ocean. The highest anomalies of methane concentrations in the water column range from 7.14 nmol/L to 113.9 nmol/L and occur just at 180-500 m above the seafloor. The distribution of methane concentration and the structural characteristics of hydrothermal plumes are strongly influenced by the supply of underlying hydrothermal fluids, the mixing process of ocean bottom currents and the microbial oxidation. Furthermore, the differences in distribution of methane plume between the station MAR-CTD3 and the other stations indicate a probable unknown hydrothermal vent site nearby. There occurs high concentration of methane along with temperature and nephelometry anomalies, which strongly confirms that the subtle measurement of methane concentration in water column is one of the effective ways to locate active sites of hydrothermal venting.

关 键 词:甲烷  浓度异常  热气流  层离法
收稿时间:28 September 2006
修稿时间:2006-09-28

Detection of methane plumes in the water column of Logatchev hydrothermal vent field, Mid-Atlantic Ridge
ZHOU HuaiYang WU ZiJun PENG XiaoTong JIANG Lei TANG Song.Detection of methane plumes in the water column of Losatchev hydrothermal vent field, Mid-Atlantic Ridse[J].Chinese Science Bulletin,2007,52(15):2140-2146.
Authors:HuaiYang Zhou  ZiJun Wu  XiaoTong Peng  Lei Jiang  Song Tang
Institution:(1) Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou, 510640, China;(2) Institute of Polar Environment, University of Science and Technology of China, Hefei, 230026, China
Abstract:During DY105-17 cruise onboard the R/V “Da Yang Yi Hao” in 2005, methane concentrations in the water column above Logachev hydrothermal vent field were measured by applying stripping/trapping-gas chromatographic (GC) and the distinct methane plumes were detected. Results show that the background methane concentration within the Logachev area is from 1.05 nmol/L to 1.68 nmol/L, significantly higher than the background level of the Atlantic abyssal plain of 0.4–0.5 nmol/L, suggesting that hydrothermal venting is a major source of dissolved methane to the ocean. The highest anomalies of methane concentrations in the water column range from 7.14 nmol/L to 113.9 nmol/L and occur just at 180–500 m above the seafloor. The distribution of methane concentration and the structural characteristics of hydrothermal plumes are strongly influenced by the supply of underlying hydrothermal fluids, the mixing process of ocean bottom currents and the microbial oxidation. Furthermore, the differences in distribution of methane plume between the station MAR-CTD3 and the other stations indicate a probable unknown hydrothermal vent site nearby. There occurs high concentration of methane along with temperature and nephelometry anomalies, which strongly confirms that the subtle measurement of methane concentration in water column is one of the effective ways to locate active sites of hydrothermal venting. Supported by Key Project of the National Natural Science Foundation of China (Grant No. 40473032), and the National Natural Science Foundation of China (Grant Nos. 40532011 and 40403004)
Keywords:Logachev vent field  hydrothermal plume  methane concentration anomalies
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