GSTDTAP  > 地球科学
DOI10.1038/s41561-020-0548-7
Phosphorus-limited conditions in the early Neoproterozoic ocean maintained low levels of atmospheric oxygen
Guilbaud, Romain1; Poulton, Simon W.2; Thompson, Jennifer2; Husband, Kathryn F.2; Zhu, Maoyan3,4,5; Zhou, Ying6; Shields, Graham A.6; Lenton, Timothy M.7
2020-03-02
发表期刊NATURE GEOSCIENCE
ISSN1752-0894
EISSN1752-0908
出版年2020
卷号13期号:4页码:296-+
文章类型Article
语种英语
国家France; England; Peoples R China
英文摘要

The redox chemistry of anoxic continental margin settings evolved from widespread sulfide-containing (euxinic) conditions to a global ferruginous (iron-containing) state in the early Neoproterozoic era (from similar to 1 to 0.8 billion years ago). Ocean redox chemistry exerts a strong control on the biogeochemical cycling of phosphorus, a limiting nutrient, and hence on primary production, but the response of the phosphorus cycle to this major ocean redox transition has not been investigated. Here, we use a geochemical speciation technique to investigate the phase partitioning of phosphorus in an open marine, early Neoproterozoic succession from the Huainan Basin, North China. We find that effective removal of bioavailable phosphorus in association with iron minerals in a globally ferruginous ocean resulted in oligotrophic (nutrient limited) conditions, and hence a probable global decrease in primary production, organic carbon burial and, subsequently, oxygen production. Nevertheless, phosphorus availability and organic carbon burial were sufficient to maintain an oxidizing atmosphere. These data imply substantial nutrient-driven variability in atmospheric oxygen levels through the Proterozoic, rather than the stable levels commonly invoked.


Early Neoproterozoic marine productivity fell due to nutrient drawdown following a switch from an iron-rich to a sulfide-rich ocean, according to records of phosphorus geochemistry measured from sedimentary sections in North China.


领域地球科学 ; 气候变化
收录类别SCI-E
WOS记录号WOS:000517739500002
WOS关键词WATER-COLUMN ANOXIA ; FERRUGINOUS CONDITIONS ; IRON ; CARBON ; EVOLUTION ; OXIDATION ; BURIAL ; RISE ; REGENERATION ; PRODUCTIVITY
WOS类目Geosciences, Multidisciplinary
WOS研究方向Geology
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被引频次:60[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/249313
专题地球科学
气候变化
作者单位1.Univ Toulouse, CNRS, Geosci Environm Toulouse, Toulouse, France;
2.Univ Leeds, Sch Earth & Environm, Leeds, W Yorkshire, England;
3.Nanjing Inst Geol & Palaeontol, State Key Lab Palaeobiol & Stratig, Nanjing, Peoples R China;
4.Nanjing Inst Geol & Palaeontol, Ctr Excellence Life & Paleoenvironm, Nanjing, Peoples R China;
5.Univ Chinese Acad Sci, Coll Earth & Planetary Sci, Beijing, Peoples R China;
6.UCL, Dept Earth Sci, London, England;
7.Univ Exeter, Global Syst Inst, Exeter, Devon, England
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Guilbaud, Romain,Poulton, Simon W.,Thompson, Jennifer,et al. Phosphorus-limited conditions in the early Neoproterozoic ocean maintained low levels of atmospheric oxygen[J]. NATURE GEOSCIENCE,2020,13(4):296-+.
APA Guilbaud, Romain.,Poulton, Simon W..,Thompson, Jennifer.,Husband, Kathryn F..,Zhu, Maoyan.,...&Lenton, Timothy M..(2020).Phosphorus-limited conditions in the early Neoproterozoic ocean maintained low levels of atmospheric oxygen.NATURE GEOSCIENCE,13(4),296-+.
MLA Guilbaud, Romain,et al."Phosphorus-limited conditions in the early Neoproterozoic ocean maintained low levels of atmospheric oxygen".NATURE GEOSCIENCE 13.4(2020):296-+.
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