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西太平洋海山富钴结壳分子化石和超微化石记录:年代划分和古生态环境演变 被引量:2
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作者 赵军 张海生 +3 位作者 于培松 武光海 卢冰 Pulyaeva I A 《海洋地质与第四纪地质》 CAS CSCD 北大核心 2014年第2期95-103,共9页
分析了西太平洋海山CM1D03富钴结壳中超微化石生物地层学记录,结合钙质微浮游生物印痕,对结壳进行了地质年代的划分,其年代为晚古新世—早始新世(54~51Ma)、中始新世(45~40Ma)、中新世—上新世(22~2.4Ma)、上新世—更新世(3.6~1.2Ma)。... 分析了西太平洋海山CM1D03富钴结壳中超微化石生物地层学记录,结合钙质微浮游生物印痕,对结壳进行了地质年代的划分,其年代为晚古新世—早始新世(54~51Ma)、中始新世(45~40Ma)、中新世—上新世(22~2.4Ma)、上新世—更新世(3.6~1.2Ma)。利用气相色谱、气相色谱-质谱联用检测了结壳中的正构烷烃、类异戊二烯、甾烷等分子化石,探讨结壳生长过程中的生源构成、沉积环境以及古生态演替特征。结果表明,结壳中氯仿沥青"A"/有机碳(TOC)比值为10.51%~21.74%,具有明显的烃类运移特征。正构烷烃的轻/重烃比值(ΣC-23/ΣC+24)为0.74~1.47,碳优势指数(CPI)为0.80~1.45,碳稳定同位素(δ13 C)为-24.00‰^-25.48‰,指示有机质主要来源于海洋表层水体的浮游植物。研究还表明,有机质物源,C27、C28、C29甾烷的丰度变化,TOC保存及δ13 C等均与结壳生长所处海洋环境、全球气候和南极底流的结构变化有关。 展开更多
关键词 富钴结壳 超微化石 分子化石 古生态环境演化 西太平洋海山
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Calcareous Nannofossils and Molecular Fossils in Cobalt-rich Crusts and their Response to the P/E Global Event 被引量:6
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作者 ZHANG Haisheng ZHAO Jun +4 位作者 HAN Zhengbing LU Bing WU Guanghai PULYAEVA I.A. 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2013年第5期1264-1274,共11页
A biostratigraphic study on calcareous nannofossils from the CM3D06 Co-rich ferromanganese crust from the Magellan seamounts in the northwestern Pacific enabled estimation of depositional age. The bio-imprinting of ca... A biostratigraphic study on calcareous nannofossils from the CM3D06 Co-rich ferromanganese crust from the Magellan seamounts in the northwestern Pacific enabled estimation of depositional age. The bio-imprinting of calcareous nannofossils and other fossil species suggests six age ranges for the nannofossils: late Cretaceous, late Paleocene, (early, middle, late) Eocene, middle Miocene, late Pliocene, and Pleistocene. Gas chromatography (GC) and gas chromatography-mass spectrometry (GC-MS) were used to test the Co-rich crusts, and a variety of molecular fossils were detected, such as chloroform bituminous "A" , n-alkane, isoprenoid and sterol. Peak carbon and molecular indices (such as C23-/C24+, CPI, Pr/Ph, Pr/nC17, Ph/nCxs and j13C) indicate that the parent organic matter is dominated by marine phytoplankton and thallogen whereas there is little input of terrestrial organic matter. Researches on calcareous nannofossils, molecular fossils and molecular organic geochemistry data reveal that the Paleocene/Eocene (P/E) global event is recorded in the cobalt- rich crusts from the northwestern Pacific Ocean. A succession of biomes can be observed near the 85 mm boundary (about 55 Ma), i.e., the disappearance of the late Cretaceous Watznaueria barnesae and Zigodicus spiralis, and Broisonia parka microbiotas above the P/E boundary, and the bloom of Coccolithus formosus, Discoaster multiradiatus, Discoaster mohleri and Discoaster sp. below the boundary. Typical parameters of molecular fossils, such as saturated hydrocarbon components and carbon-number maxima, Pr/Ph, Pr/C17, Ph/C18, distribution types of sterols, Ts/Tm ratios and bacterial hopane, also exhibit dramatic changes near the P/E boundary. These integrated results illustrate that the biome succession of calcareous nannofossils, relative content of molecular fossils and molecular indices in the cobalt-rich crusts near the 85 mm boundary faithfully record the P/E global event. 展开更多
关键词 Late Cretaceous cobalt-rich crust calcareous nannofossils molecular fossils Paleocene-Eocene boundary PETM
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Biomineralization of organic matter in cobalt-rich crusts from the Marcus–Wake Seamounts of the western Pacific Ocean 被引量:3
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作者 ZHAO Jun ZHANG Haisheng +4 位作者 WU Guanghai LU Bing PULYAEVA Irina A ZHANG Haifeng PANG Xuehui 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2014年第12期67-74,共8页
Organic matter in cobalt-rich crust (CRC) from the Marcus-Wake Seamounts of the western Pacific Ocean, Sample CM1D03, has been analyzed to understand the source, geochemistry and mineralization of organic matter, an... Organic matter in cobalt-rich crust (CRC) from the Marcus-Wake Seamounts of the western Pacific Ocean, Sample CM1D03, has been analyzed to understand the source, geochemistry and mineralization of organic matter, and the mineralization environment. Biomarkers, includingn-alkanes, isoprenoids, terpanes and sterols, have been detected in various layers of the CRC sample, using gas chromatography (GC) and gas chromatography-mass spectrometry (GC-MS). The content of organic carbon (OC) and its stable isotope (δ13C), and the combined features of the biomarkers show that the mineralized organic matter in CM1D03 CRC was mainly derived from microorganisms and lower plankton (e.g., bacteria and algae, respectively) from marine surface water, with some terrestrial higher plant components. The ratio of chloroform bitu-men "A": OC was high in the CRC, between 10.51 and 20.66, showing significant migration characteristics of n-alkanes. Four mineralization categories of organic matter were recognized based on GC chromatograms ofn-alkane molecules: (1) primitive type (bacteria and algae), which is characterized by moderately mature ofn-alkanes preserving the original characteristics of the organic matter from microorganisms and lower plankton; (2) microbial degradation type, which is characterized by low contents ofn-alkanes and rising baseline in the chromatogram, with the "bulge" being the products of organic matter by biodegradation; (3) organic matter migration type, which is characterized by low carbon number ofn-alkanes withnC18 as the main peak carbon, without odd even predominance, and low concentrations of isoprenoids and hydro-carbons with high carbon number; and (4) organic matter hydrothermal type, which is characterized by relatively low concentration of small molecular weightn-alkanes, pristane, and phytane, accompanied by higher concentration ofn-alkanes with carbon number greater thannC18. This study shows that biomarkers can record controlling factors of mineralization and their variation. 展开更多
关键词 ubiomineralization cobalt-rich crust biomarker Marcus-Wake Seamounts
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太平洋海山富钴结壳钙质超微化石生物地层学及生长过程 被引量:3
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作者 张海生 韩正兵 +5 位作者 雷吉江 赵军 于培松 胡佶 卢冰 Pulyaev I.A. 《地球科学(中国地质大学学报)》 EI CSCD 北大核心 2014年第7期775-783,共9页
正确判断富钴结壳生长年代及过程有助于研究结壳形成地质历史和重建古海洋环境.利用生物地层学方法(生物遗留印痕)对太平洋不同海山结壳样品进行生长时代和阶段研究,发现麦哲伦海山CM3D06结壳和中太平洋海山CB14结壳最初形成年代和富集... 正确判断富钴结壳生长年代及过程有助于研究结壳形成地质历史和重建古海洋环境.利用生物地层学方法(生物遗留印痕)对太平洋不同海山结壳样品进行生长时代和阶段研究,发现麦哲伦海山CM3D06结壳和中太平洋海山CB14结壳最初形成年代和富集特征差异显著:前者为白垩纪(或更古老)、晚古新世-早始新世、中-晚始新世、中-晚中新世、上新世-更新世等5个阶段;后者为晚古新世-早始新世、中-晚始新世、中中新世、上新世-更新世等4个阶段.两座海山结壳层内部超微化石组合具有极强的区域性特征,反映了大洋环境对生物的影响以及生物对环境的适应.结壳层间的不整合和结构构造的变化指示在渐新世其生长存在间断期,与成矿作用的间断有关. 展开更多
关键词 富钴结壳 钙质超微化石 生物地层学 地质年代 太平洋海山 地球化学
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西太平洋海山富钴结壳钙质超微化石变化与E/O界限的地质记录 被引量:2
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作者 张海生 胡佶 +6 位作者 赵军 韩正兵 于培松 武光海 雷吉江 卢冰 PULYAEVA Irina A 《中国科学:地球科学》 CSCD 北大核心 2015年第4期508-519,共12页
选择马尔库斯-威克海山区和麦哲伦海山区的2块壳结纹层记录,进行生物地层学的精细研究,并利用钙质超微化石的生物印痕分出时代:马尔库斯-威克海山CM1D03年代为晚古新世到更新世,而麦哲伦海山CM3D06结壳年代则更久远些——白垩纪晚期(约... 选择马尔库斯-威克海山区和麦哲伦海山区的2块壳结纹层记录,进行生物地层学的精细研究,并利用钙质超微化石的生物印痕分出时代:马尔库斯-威克海山CM1D03年代为晚古新世到更新世,而麦哲伦海山CM3D06结壳年代则更久远些——白垩纪晚期(约大于70.0 Ma),这表明不同海山的富钴结壳最初形成年代和富集特征具有显著的时空差异性,而不同海山结壳层内部的古微体化石组合面貌、分布特征上的差别表明有关属种对大洋不同环境的适应性差异所致.本文还利用结壳纹层中所保存的钙质超微化石种群数进行生态学研究,寻找钙质超微化石变化与古新世末至渐新世初(E/O)界限地质事件的联系,研究发现在E/O界线之交(对应CM1D03结壳的25 mm和CM3D06结壳的58mm附近)生物群落发生明显演替和重组,这些生物群落在E/O界限上下的改变所形成独特的生态结构,无疑反映了西太平洋古生物群落对全球冷事件存在明显响应,也说明结壳生长过程与全球气候变化有着紧密联系. 展开更多
关键词 马尔库斯-威克海山区 麦哲伦海山区 富钴结壳 超微化石 E/O地质界限事件
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Variations of calcareous nannofossils of cobalt-rich crusts and geological records at the Eocene-OIigocene transition in western Pacific seamounts 被引量:1
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作者 ZHANG HaiSheng HU Ji +6 位作者 ZHAO Jun HAN ZhengBing YU PeiSong WU GuangHai LEI Ji Jiang LU Bing Irina A PULYAEVA 《Science China Earth Sciences》 SCIE EI CAS CSCD 2015年第5期784-794,共11页
Two records of the crust laminae from the Marcus-Wake Seamounts and the Magellan Seamount were biostratigraphically studied. Based on biological imprints of the calcareous nannofossils, the geological ages of the two ... Two records of the crust laminae from the Marcus-Wake Seamounts and the Magellan Seamount were biostratigraphically studied. Based on biological imprints of the calcareous nannofossils, the geological ages of the two records were determined, with CM1D03 from the Marcus-Wake Seamounts being of late Paleocene to Pleistocene and CM3D06 from the Magellan Seamount of Late Cretaceous (more than 70.0 Ma). There are the obvious temporal-spatial differences in the initial formation period and enrichment characteristics of the cobalt-rich crusts of the two seamount chains and differences in the combination and distribution of microfossils in the inner crust layers between the seamounts. These differences are due to the adaptabilities of oceanic species in different environments. Ecological research was carried out in terms of population size of the calcareous nannofossi|s preserved in the crustal layers to discern the relation of the geological events at the Eocene-Oligocene (E/O) tran- sition. The results show the transitions and recombination of species in the biotic community during the E/O transition obvi- ously corresponded to 25 mm depth in the CM1D03 crust and 58 mm depth in the CM3D06 crust. The changes in biological species and the formation of particular ecological structures indicate the adaptive response of the paleo-biological community in the western Pacific Ocean to the global cold-climate events and the close correlation between the formation of the crust and the global climate change. 展开更多
关键词 Marcus-Wake Seamounts Magellan Seamount cobalt-rich crust NANNOFOSSIL E/O geological event
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