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台湾海峡铀的来源及保守性混合
引用本文:岑蓉蓉,刘艳娜,邢娜,陈敏,成华,蔡毅华.台湾海峡铀的来源及保守性混合[J].海洋学报(英文版),2017,36(3):72-81.
作者姓名:岑蓉蓉  刘艳娜  邢娜  陈敏  成华  蔡毅华
作者单位:近海海洋环境科学国家重点实验室(厦门大学), 厦门, 361005;福建省海陆界面生态环境重点实验室(厦门大学), 厦门, 361005,近海海洋环境科学国家重点实验室(厦门大学), 厦门, 361005,近海海洋环境科学国家重点实验室(厦门大学), 厦门, 361005,近海海洋环境科学国家重点实验室(厦门大学), 厦门, 361005,厦门大学物理学系, 厦门, 361005,近海海洋环境科学国家重点实验室(厦门大学), 厦门, 361005;福建省海陆界面生态环境重点实验室(厦门大学), 厦门, 361005
基金项目:The National Basic Research Program (973 Program) of China under contract Nos 2014CB953700 and 2014CB953702; the National Natural Science Foundation of China under contract Nos 40906040 and 41276063; the Natural Science Foundation of Fujian Province under contract No. 2015Y0040; the Public Science and Technology Research Fund of the State Oceanic Administration of China under contract No. 201505034; the Fundamental Research Funds for the Central Universities of China and the Scientific Research Foundation for Returned Overseas Chinese Scholars of the Ministry of Education of China.
摘    要:Seawater samples are collected in the spring of 2013 from the Taiwan Strait for the analysis of uranium(U)concentrations and isotopic compositions using MC-ICP-MS, and the geochemical behavior patterns of U in the Taiwan Strait are then investigated. Average concentrations of individual U isotopes are(3.23±0.14) μg/kg for 238 U,(2.34±0.09)×10~(–2) μg/kg for ~(235)U and(2.05±0.07)×10~(–4) μg/kg for 234 U. Correspondingly, the U isotopic compositions are 155±18 for δ234U and 138±2 for 238U:235U. The U concentrations and isotopic ratios in the Taiwan Strait are similar to those of open ocean seawater, suggesting the dominance of the open ocean input to the strait's U pool.However, river input, as suggested by the slightly lower salinity than that of the open ocean, also affected the U concentrations and isotopic compositions in the strait. From a compilation of U concentrations in the Taiwan Strait and adjacent areas, including the Jiulong Estuary and Zhujiang Estuary, the Xiamen Bay and the northern South China Sea, a strong and significant relationship between U concentration and salinity U:S; U=(0.093 4±0.002 4)S+(0.092 0±0.061 5)] is revealed, suggesting conservative mixing of U in the Taiwan Strait. To better understand the U geochemistry in the Taiwan Strait, a multiple endmembers mixing model is applied to estimate the contributions of potential sources. The open ocean seawater contributed 69%–95% of U in the Taiwan Strait, with river water approximately 2%, and dust deposition only around 0.13%. Therefore, the model results supported the open ocean input source and the conservative mixing behavior of U derived from the observation of U concentrations and isotopic ratios and U:S ratios. The sediment interstitial water may be an important source of U to the Taiwan Strait with a possible contribution of 3%–29%, consistent with previous investigations based on radium isotopes.However, further investigations are warranted to examine the U concentration in the sediment interstitial water and its input to the overlying seawater in the Taiwan Strait.

关 键 词:保守性混合    海水  台湾海峡
收稿时间:2016/10/27 0:00:00
修稿时间:2016/12/2 0:00:00

Sources and conservative mixing of uranium in the Taiwan Strait
CEN Rongrong,LIU Yann,XING N,CHEN Min,CHENG Hua and CAI Yihua.Sources and conservative mixing of uranium in the Taiwan Strait[J].Acta Oceanologica Sinica,2017,36(3):72-81.
Authors:CEN Rongrong  LIU Yann  XING N  CHEN Min  CHENG Hua and CAI Yihua
Institution:1.State Key Laboratory of Marine Environmental Science, College of Ocean and Earth Science, Xiamen University, Xiamen 361005, China;Fujian Provincial Key Laboratory for Coastal Ecology and Environmental Studies, Xiamen University, Xiamen 361005, China2.State Key Laboratory of Marine Environmental Science, College of Ocean and Earth Science, Xiamen University, Xiamen 361005, China3.Department of Physics, Xiamen University, Xiamen 361005, China
Abstract:Seawater samples are collected in the spring of 2013 from the Taiwan Strait for the analysis of uranium (U) concentrations and isotopic compositions using MC-ICP-MS, and the geochemical behavior patterns of U in the Taiwan Strait are then investigated. Average concentrations of individual U isotopes are (3.23±0.14) μg/kg for 238U, (2.34±0.09)×10–2 μg/kg for 235U and (2.05±0.07)×10–4 μg/kg for 234U. Correspondingly, the U isotopic compositions are 155±18 for δ234U and 138±2 for 238U:235U. The U concentrations and isotopic ratios in the Taiwan Strait are similar to those of open ocean seawater, suggesting the dominance of the open ocean input to the strait’s U pool. However, river input, as suggested by the slightly lower salinity than that of the open ocean, also affected the U concentrations and isotopic compositions in the strait. From a compilation of U concentrations in the Taiwan Strait and adjacent areas, including the Jiulong Estuary and Zhujiang Estuary, the Xiamen Bay and the northern South China Sea, a strong and significant relationship between U concentration and salinity U:S; U=(0.093 4±0.002 4)S+(0.092 0±0.061 5)] is revealed, suggesting conservative mixing of U in the Taiwan Strait. To better understand the U geochemistry in the Taiwan Strait, a multiple endmembers mixing model is applied to estimate the contributions of potential sources. The open ocean seawater contributed 69%–95% of U in the Taiwan Strait, with river water approximately 2%, and dust deposition only around 0.13%. Therefore, the model results supported the open ocean input source and the conservative mixing behavior of U derived from the observation of U concentrations and isotopic ratios and U:S ratios. The sediment interstitial water may be an important source of U to the Taiwan Strait with a possible contribution of 3%–29%, consistent with previous investigations based on radium isotopes. However, further investigations are warranted to examine the U concentration in the sediment interstitial water and its input to the overlying seawater in the Taiwan Strait.
Keywords:conservative mixing  uranium  seawater  Taiwan Strait
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