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南海北部琼东南盆地冷泉区表层沉积物微量元素的分析及其对甲烷渗漏的指示
引用本文:孙甜甜,邬黛黛,杨飞,刘丽华,陈雪刚,叶瑛.南海北部琼东南盆地冷泉区表层沉积物微量元素的分析及其对甲烷渗漏的指示[J].海洋学报(英文版),2019,38(7):84-95.
作者姓名:孙甜甜  邬黛黛  杨飞  刘丽华  陈雪刚  叶瑛
作者单位:浙江大学海洋学院, 舟山 316021;中国科学院天然气水合物重点实验室, 中国科学院广州能源研究所, 广州 510640,中国科学院天然气水合物重点实验室, 中国科学院广州能源研究所, 广州 510640;Evaluation and Detection Technology Laboratory of Marine Mineral Resources, Pilot National Laboratory for Marine Sciences and Technology (Qingdao), Qingdao 266071, China,中国科学院天然气水合物重点实验室, 中国科学院广州能源研究所, 广州 510640,中国科学院天然气水合物重点实验室, 中国科学院广州能源研究所, 广州 510640,浙江大学海洋学院, 舟山 316021,浙江大学海洋学院, 舟山 316021
基金项目:The Program of Institution of South China Sea Ecology and Environmental Engineering, Chinese Academy of Sciences under contract No. ISEE2018YB03; the Special Project for Marine Economy Development of Guangdong Province under contract No. GDME-2018D002; the Evaluation and Detection Technology Laboratory for Marine Mineral Resources, Qingdao National Laboratory for Marine Science and Technology under contract No. KC201703; the Youth Innovation Promotion Association CAS under contract No. 201432.
摘    要:Recent studies have shown that specific geochemical characteristics of sediments can be used to reconstruct past methane seepage events. In this work, the correlation between the Sr/Ca and Mg/Ca ratios of sediment samples is analyzed and the sulfate concentration profile in Site C14 from cold-seep sediments in the Qiongdongnan Basin in northern South China Sea is obtained. The results confirmed that, sulfate at 0–247 cm below sea floor(Unit I) is mainly consumed by organic matter sulfate reduction(OSR), while sulfate at 247–655 cm(Unit II) is consumed by both the OSR and the anaerobic oxidation of methane(AOM). In addition, the bottom sediment layer is affected by weak methane seepage. The Mo and U enrichment factors also exhibit similar trends in their respective depth profiles. The responses of trace elements, including Co/Al, Ni/Al, Cr/Al and Zn/Al ratios to methane seepage allowed the study of depositional conditions and methane seepage events. Based on the results, it is speculated that the depositional conditions of Unit II changed with depth from moderate conditions of sulfidic and oxic conditions to locally anoxic conditions, and finally to suboxic conditions due to methane fluid leakage. The stable isotope values of chromium-reducible sulfide produced by AOM and those of sulfide formed by OSR in the early diagenetic environment suffered serious depletion of 34 S. This was probably due to weak methane leakage, which caused the slower upward diffusion and the effect of early diagenesis on the samples. It is necessary to consider the effects of depositional environments and diagenesis on these geochemical parameters.

关 键 词:琼东南盆地  微量元素  铬还原性硫化物(CRS)  硫同位素值  甲烷厌氧氧化作用(AOM)  甲烷渗漏
收稿时间:2018/5/8 0:00:00

Sedimentary geochemical proxies for methane seepage at Site C14 in the Qiongdongnan Basin in the northern South China Sea
SUN Tiantian,WU Daidai,YANG Fei,LIU Lihu,CHEN Xuegang and YE Ying.Sedimentary geochemical proxies for methane seepage at Site C14 in the Qiongdongnan Basin in the northern South China Sea[J].Acta Oceanologica Sinica,2019,38(7):84-95.
Authors:SUN Tiantian  WU Daidai  YANG Fei  LIU Lihu  CHEN Xuegang and YE Ying
Abstract:Recent studies have shown that specific geochemical characteristics of sediments can be used to reconstruct past methane seepage events. In this work, the correlation between the Sr/Ca and Mg/Ca ratios of sediment samples is analyzed and the sulfate concentration profile in Site C14 from cold-seep sediments in the Qiongdongnan Basin in northern South China Sea is obtained. The results confirmed that, sulfate at 0-247 cm below sea floor (Unit I) is mainly consumed by organic matter sulfate reduction (OSR), while sulfate at 247-655 cm (Unit Ⅱ) is consumed by both the OSR and the anaerobic oxidation of methane (AOM). In addition, the bottom sediment layer is affected by weak methane seepage. The Mo and U enrichment factors also exhibit similar trends in their respective depth profiles. The responses of trace elements, including Co/Al, Ni/Al, Cr/Al and Zn/Al ratios to methane seepage allowed the study of depositional conditions and methane seepage events. Based on the results, it is speculated that the depositional conditions of Unit Ⅱ changed with depth from moderate conditions of sulfidic and oxic conditions to locally anoxic conditions, and finally to suboxic conditions due to methane fluid leakage. The stable isotope values of chromium-reducible sulfide produced by AOM and those of sulfide formed by OSR in the early diagenetic environment suffered serious depletion of 34S. This was probably due to weak methane leakage, which caused the slower upward diffusion and the effect of early diagenesis on the samples. It is necessary to consider the effects of depositional environments and diagenesis on these geochemical parameters.
Keywords:Qiongdongnan Basin  trace elements  stable isotope values  anaerobic oxidation of methane  methane activity
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