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南海北部天然气水合物潜在区973-3岩心古菌多样性被引量:5
2016年
海底微生物产甲烷和甲烷厌氧氧化作用对全球甲烷循环有着重要影响。在全球升温的背景下,海底天然气水合物作为地球上的一个巨大甲烷库,具有重要的环境效应。利用基于16SrDNA的分子生物学技术,对南海北部台西南盆地天然气水合物潜在区沉积物中古菌多样性进行了分析,探讨了成岩环境因素对古菌种群分布的影响。结果显示:在973—3岩心20—450cm深度段,Methanosaeta为优势菌群,所占比例为32.9%;Methanosarcinales在542—870cm深度段所占比例最高,达到28.3%;Methanomicrobia—zes在1075—1162cm深度段所占比例高达20.7%。973—3岩心古菌种群分布与甲烷产生、氧化密切相关,预示其下部赋存天然气水合物。973—3岩心成岩环境参数垂向变异与天然气水合物成藏有着明显响应关系:pH值随岩心深度增加而变大,Eh(氧化还原电位)值、盐度和沉积物粒径的变化趋势则相反。973—3岩心与日本海、南海神狐海域等天然气水合物赋存区、非赋存区古菌群落结构明显不同,这是由于pH值、Eh值和沉积物粒径等成岩环境参数对973—3岩心古菌种群分布有着显著影响,故必须深入研究微生物代谢甲烷活动的生态位,以提高古菌群落结构对天然气水合物的指示性。
杨玉峰雷怀彦史春潇
关键词:古菌多样性成岩环境天然气水合物台西南盆地南海北部
深水沉积物岩心古菌群落结构对天然气水合物的指示——以南海台西南海域973-4站位为例被引量:4
2015年
微生物产甲烷作用和甲烷厌氧氧化作用对海底天然气水合物(以下简称水合物)的形成、分解有着重要的影响,但目前有关古菌类群的代谢机理及其对水合物成藏的指示作用尚有待深入研究。为此,利用基于16S rDNA的分子生物学技术,对南海台西南海域973-4站位岩心的古菌群落结构进行了分析,并与日本海、南海神狐海域等水合物赋存、非赋存区的古菌群落结构进行了对比。结果表明:①973-4站位岩心中广古菌Methanosarcina为优势类群,在表层所占比例为50%,在硫酸盐-甲烷转换带(SMTZ)的比例为46.1%,在深层的比例为66.7%;②Methanomicrobiales为次优势类群,在表层所占比例为28.3%,在SMTZ层位为30.7%,在深层为11.1%;③上述2个古菌类群所占比例的变化趋势与海洋沉积物早期成岩过程中有机质含量、组分的变异密切相关。结论认为:①古菌群落结构与细菌、地球化学和矿物学的分析结果一致,表明973-4站位岩心下部赋存水合物;②由于古菌群落结构存在差异性,必须考虑地球化学参数和地质特征的协同作用,才能提高其对水合物成藏指示的精准性。
杨玉峰雷怀彦史春潇
关键词:台西南盆地古菌多样性神狐海域天然气水合物
Lipid Distribution in Marine Sediments from the Northern South China Sea and Association with Gas Hydrate被引量:4
2014年
The distributions of lipids in surface and subsurface sediments from the northern South China Sea were determined. The n-alkanes were in bimodal distribution that is characterized by a centre at n-C16 –n-C20 with maximum at C18(or C19) and n-C27 –n-C31 as well as at C29(or C31). The short-chain alkanes suffered from significant losses due to their slow deposition in the water column, and their presence with a slight even carbon predominance in shallow seafloor sediments was ascribed mainly to the direct input from the benthos. The long-chain alkanes with odd predominance indicate transportion of terrigenous organic matter. Immature hopanoid biomarkers reflect the intense microbial activity for bacteria–derived organic matter and the gradual increase of maturity with burial depth. Abundant n-fatty acid methyl esters(n-FAMEs) that are in distributions coincident with fatty acids were detected in all samples. We proposed that the observed FAMEs originated from the methyl esterification of fatty acids; methanol production by methanotrophs and methanogenic archaea related to the anaerobic oxidation of methane, and sulfate reduction provided an O–methyl donor for methylation of fatty acids. The CH4 released from hydrate dissociation at oxygen isotope stage II of Cores ZD3 and ZS5, which had been confirmed by the occurrence of negative δ13C excursion and spherical pyrite aggregates, could have accelerated the above process and thus maximized the relative content of FAMEs at ZD3-2(400–420 cm depth) and ZS5-2(241–291 cm depth).
OU WenjiaLEI HuaiyanLU WanjunZHANG JieSHI ChunxiaoGONG ChujunHAN Chao
关键词:沉积物分布脂肪酸甲酯表层沉积物
Carbon Geochemistry of Gas Hydrate-associated Sediments in the Southwestern Taiwan Basin被引量:2
2018年
Marine gas hydrates, one of the largest methane reservoirs on Earth, may greatly affect the deep sea sedimentary environment and biogeochemistry; however, the carbon geochemistry in gas hydrate-bearing sediments is poorly understood. In this study, we investigated the carbon variables in sediment core 973-3 from the southwestern Taiwan Basin in the South China Sea to understand the effect of environmental factors and archaeal communities on carbon geochemistry. The carbon profiles suggest the methanogenesis with the incerase of dissolved inorganic carbon(DIC) and high total organic carbon(TOC)(mean = 0.46%) originated from terrigenous organic matter(mean δ^(13)C_(TOC) value of-23.6‰) driven by the abundant methanogen ‘Methanosaeta and Methanomicrobiales'. The active anaerobic oxidation of methane is characterized by the increase of DIC and inorganic carbon(IC), and the depleted δ^(13)C_(IC), coupled with the increase of TOC and the decrease of δ^(13)C_(TOC) values owing to the methanotroph ‘Methanosarcinales/ANME' in 430–840 cm. Environmental factors and archaeal communities in core 973-3 are significantly correlated to carbon variables owing to methane production and oxidation. Our results indicate that the carbon geochemical characteristics are obviously responding to the formation and decomposition of gas hydrates. Furthermore, pH, Eh and grain size, and Methanosaeta greatly affect the carbon geochemistry in gas hydrate-associated sediments.
LEI HuaiyanYANG YufengSelvaraj KANDASAMYSHI Chunxiao
关键词:ARCHAEA
南海北部台西南盆地973-4岩芯碳的地球化学特征
2016年
对南海北部台西南盆地天然气水合物潜在区(973-4岩芯)碳的形态、含量和稳定同位素组成进行了分析,并探讨了成岩环境因素和细菌种群与碳地球化学行为的关系。结果显示:(1)TOC含量为0.4%~1.3%,δ^(13)CTOC为–26.7‰~–23.9‰,说明973-4岩芯主要为陆源有机质,能够满足微生物产甲烷的需要;DIC和δ^(13)CIC的垂向变异及其显著负相关,指示:973-4岩芯560~890 cm深度段有SO42–驱动的AOM反应。(2)p H、Eh、沉积物粒径等成岩环境参数与TOC、IC、δ^(13)CTOC、δ^(13)CIC等碳地化参数显著相关。(3)细菌种群与DIC、δ^(13)CIC显著相关。结论认为:(1)973-4岩芯碳的地化行为与天然气水合物成藏存在明显响应关系。(2)成岩环境参数的垂向变异与碳的地球化学特征密切相关。(3)细菌种群对碳的地化参数变异有着显著影响。
杨玉峰雷怀彦
关键词:台西南盆地成岩环境细菌种群
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