Arid
DOI10.1016/j.epsl.2018.07.044
Aerobic iron and manganese cycling in a redox-stratified Mesoarchean epicontinental sea
Ossa, Frantz Ossa1,2; Hofmann, Axel1; Wille, Martin2,3; Spangenberg, Jorge E.4; Bekker, Andrey1,5; Poulton, Simon W.6; Eickmann, Benjamin2; Schoenberg, Ronny2
通讯作者Ossa, Frantz Ossa
来源期刊EARTH AND PLANETARY SCIENCE LETTERS
ISSN0012-821X
EISSN1385-013X
出版年2018
卷号500页码:28-40
英文摘要

Redox conditions in the marine realm prior to the Great Oxidation Event (GOE; similar to 2.46-232 Ga ago), during which the atmospheric oxygen level rose dramatically for the first time, are still debated. Here, we present C, O , Fe, and Mo stable isotope systematics of Fe-, Mn-, and carbonate-rich shales, deposited at different water depths in association with iron formations (IFs) of the Mesoarchean Mozaan Group, Pongola Supergroup, South Africa. delta(13C) values between-22.3 and -13.5%(0) VPDB, and delta O-18 values between -21.1 and -8.6%(0) VPDB for Fe-Mn-rich carbonate minerals indicate their precipitation out of equilibrium with seawater. Instead, early diagenetic reduction of Fe-Mn-oxyhydroxide precursor minerals, along with microbially induced oxidation of organic matter (OM), formed these carbonates. delta(56)Feinrm-014 values between -1.27 and 0.14%o and delta(MONIST)-M-98 (3134+0.25) values between -0.46 and 0.56%o co-vary with Mn concentrations and inferred water depth of deposition. This suggests that, despite the diagenetic origin of the Fe-Mn carbonates, the primary light Fe and Mo isotopic signature of Fe-Mn-oxyhydroxides that originally precipitated from seawater is still preserved. While isotopically light Mo implies that Mn(II) was oxidized to Mn(IV) due to the availability of free, photosynthetically produced 02, Mn enrichment suggests that the water column was redox stratified with a Mn-redoxcline situated at a depth below the storm wave base. A trend to highly negative delta Fe-56 values with increasing Mn/Fe ratios and decreasing depositional depth suggests progressive oxidation of Fe(II) as deep-waters upwelled across a redoxcline towards shallow, locally oxygenated waters where Mn(IV) oxyhydroxides precipitated. Combined delta Fe-56 and delta Mo-98 data indicate pervasive oxygenation of seawater with the O-2 content in the photic zone likely reaching levels higher than the maximum value of 10 mu M proposed for Archean oxygen oases. Since abiotic Mn(II) oxidation is kinetically very slow in marine environments, it is likely that Mn-oxidizing microorganisms catalyzed Mn-oxidation in the oxygenated Pongola surface waters during deposition of IFs. This implies that aerobic metabolism had evolved before the GOE in shallow, aquatic habitats, where it exerted a first-order control on the deposition of shallow-marine, Mn-rich iron formations. (C) 2018 Elsevier B.V. All rights reserved.


英文关键词Mesoarchean oxygenation iron formations manganese deposits Mozaan Group Pongola Supergroup
类型Article
语种英语
国家South Africa ; Germany ; Switzerland ; USA ; England
收录类别SCI-E
WOS记录号WOS:000445718700003
WOS关键词MOLYBDENUM ISOTOPE FRACTIONATION ; GREAT OXIDATION EVENT ; PONGOLA SUPERGROUP ; SOUTH-AFRICA ; OXYGENIC PHOTOSYNTHESIS ; FORMATION DEPOSITION ; ARCHEAN ATMOSPHERE ; FE(II) OXIDATION ; BLACK SHALES ; MOZAAN GROUP
WOS类目Geochemistry & Geophysics
WOS研究方向Geochemistry & Geophysics
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/208609
作者单位1.Univ Johannesburg, Dept Geol, ZA-2092 Johannesburg, South Africa;
2.Univ Tubingen, Dept Geosci, D-72074 Tubingen, Germany;
3.Univ Bern, Inst Geol Sci, CH-3012 Bern, Switzerland;
4.Univ Lausanne, Inst Earth Surface Dynam, CH-1015 Lausanne, Switzerland;
5.Univ Calif Riverside, Dept Earth Sci, Riverside, CA 92521 USA;
6.Univ Leeds, Sch Earth & Environm, Leeds LS2 9JT, W Yorkshire, England
推荐引用方式
GB/T 7714
Ossa, Frantz Ossa,Hofmann, Axel,Wille, Martin,et al. Aerobic iron and manganese cycling in a redox-stratified Mesoarchean epicontinental sea[J],2018,500:28-40.
APA Ossa, Frantz Ossa.,Hofmann, Axel.,Wille, Martin.,Spangenberg, Jorge E..,Bekker, Andrey.,...&Schoenberg, Ronny.(2018).Aerobic iron and manganese cycling in a redox-stratified Mesoarchean epicontinental sea.EARTH AND PLANETARY SCIENCE LETTERS,500,28-40.
MLA Ossa, Frantz Ossa,et al."Aerobic iron and manganese cycling in a redox-stratified Mesoarchean epicontinental sea".EARTH AND PLANETARY SCIENCE LETTERS 500(2018):28-40.
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