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Calcareous nannofossil changes in the Early Oligocene linked to nutrient and atmospheric CO2
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作者 Ruigang Ma Haizhang Yang +3 位作者 Xiaobo Jin Zhao Zhao Gongcheng Zhang Chuanlian Liu 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2020年第10期70-80,共11页
Rapid changes on nutrient supply and CO2 concentration that occurred in the northern South China Sea(SCS)during the Early Oligocene,provides an ideal natural laboratory,allowing us to peer into the coccolithophores’p... Rapid changes on nutrient supply and CO2 concentration that occurred in the northern South China Sea(SCS)during the Early Oligocene,provides an ideal natural laboratory,allowing us to peer into the coccolithophores’physiology in the geological records.In this study,we established a new nannofossil assemblage index,termed as E^*ratio,which is calculated by the relative abundance of eutrophic taxa and meso-oligotrophic taxa(E^*=e/e+c,where e is eutrophic taxa,and c is meso-oligotrophic taxa)Eutrophic taxa include small Reticulofenestra,Reticulofenestra lockeri group,Reticulofenestra bisecta group and Coccolithus pelagicus group,while meso-oligotrophic taxa include Cyclicargolithus spp.The E^*ratio is well correlated with nutrient proxy during the Early Oligocene,while with different covarying patterns under the higher and lower CO2 condition.By comparing the assemblage changes to the published data,we suggest that coccolithophores may change the way they use carbon source and nutrient with the decline of CO2.Furthermore,this implies a possible initiation of the carbon concentrating mechanism. 展开更多
关键词 COCCOLITHOPHORE assemblage change weathering intensity carbon concentrating mechanism northern South China Sea
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Episode of intense chemical weathering during the termination of the 635 Ma Marinoan glaciation
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《Science Foundation in China》 CAS 2017年第1期22-22,共1页
Subject Code:D02With the support by the National Natural Science Foundation of China and the Thousand Talent Program for Young Outstanding Scientists,a research team led by Prof.Shen Bing(沈冰)at the School of Earth a... Subject Code:D02With the support by the National Natural Science Foundation of China and the Thousand Talent Program for Young Outstanding Scientists,a research team led by Prof.Shen Bing(沈冰)at the School of Earth and Space Sciences of Peking University,uncovered chemical weathering during the termination of Marinoan Snowball Earth.This study was published in PNAS(2016,113:14904—14909). 展开更多
关键词 Episode of intense chemical weathering during the termination of the 635 Ma Marinoan glaciation 沈冰
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