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海底天然气水合物分解与甲烷归宿研究进展

Advances in Gas Hydrate Dissociation and Fate of Methane in Marine Sediment

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【作者】 陈忠颜文陈木宏王淑红肖尚斌陆钧杨华平

【Author】 CHEN Zhong~(1,2),YAN Wen~(1,2),CHEN Mu-hong~1,WANG Shu-hong~(1,2) XIAO Shang-bin~1,LU Jun~1,YANG Hua-ping~(1,2) (1.South China Sea Institute of Oceanology,Chinese Academy of Sciences,Guangzhou 510301,China;2.Guangzhou Center for Gas Hydrate Research,Chinese Academy of Sciences,Guangzhou 510301,China)

【机构】 中国科学院南海海洋研究所中国科学院南海海洋研究所 广东广州510301中国科学院广州天然气水合物研究中心广东广州510301广东广州510301

【摘要】 综述了近年来天然气水合物分解与甲烷归宿等方面的研究成果。天然气水合物的汇聚与地质构造或地层圈闭有关,其溶解受物质转换控制,分解则受热转换控制。水合物释放甲烷的运移方式包括分散式、中心式和大规模排放式。缺氧氧化和耗氧氧化是甲烷在海洋环境中的2种主要转化方式。天然气水合物释放甲烷的最终归宿主要为:①重新形成天然气水合物;②形成化能自养生物群落和沉淀出碳酸盐沉积;③与氧发生氧化后转变为CO2;④直接排放进入到大气中。沉积物中的微构造、化能自养生物群落、自生碳酸盐矿物及其碳氧同位素组成是水合物释放事件的指纹记录。

【Abstract】 Here we introduce and outline some advances of gas hydrate dissociation and fate of methane in marine sediment.A gas hydrate accumulation in sediments is related to a geological structure and/or stratigraphic trap,and the kinetic control for gas hydrate dissolution is mass transfer and that of dissociation is heat transfer.There are three main release types of methane release from gas hydrates within the accretionary sediment,such as distributed migration,focused migration and massive methane release.There now exists compelling evidence that anaerobic oxidation and aerobic oxidation of methane are two main reaction pathways in marine sediments and waters.Methane release by hydrate destabilization has been proposed to have four ultimate sinks,namely reformation gas hydrate,precipitation of carbonate minerals and formation of unique clam or tubeworm communities,transformation carbon dioxide,discharge into the atmosphere.The evidence preserved in the fossil sedimentary deposits,including sedimentary mictrostructures,nodular or encrusting diagenetic carbonates,specific benthic fauna and oxygen and carbon isotopic compositions of carbonates,might have registered the past occurrence of gas hydrates.

【基金】 国家自然科学基金项目“南海自然铝的成因及其对寻找油气、天然气水合物的指示意义”(编号:40406011);国家863计划青年基金项目“南海某些特征自生矿物的形成机理对水合物、油气探查的敏感性研究”(编号:2004AA616090)资助
  • 【文献出处】 地球科学进展 ,Advances in Earth Science , 编辑部邮箱 ,2006年04期
  • 【分类号】P744.4
  • 【被引频次】38
  • 【下载频次】782
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