GSTDTAP  > 地球科学
DOI10.1073/pnas.1908783116
A diurnal carbon engine explains 13C-enriched carbonates without increasing the global production of oxygen
Emily C. Geyman and Adam C. Maloof
2019
发表期刊PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
出版年2019
英文摘要

Abstract

In the past 3 billion years, significant volumes of carbonate with high carbon-isotopic (δ13C) values accumulated on shallow continental shelves. These deposits frequently are interpreted as records of elevated global organic carbon burial. However, through the stoichiometry of primary production, organic carbon burial releases a proportional amount of O2, predicting unrealistic rises in atmospheric pO2 during the 1 to 100 million year-long positive δ13C excursions that punctuate the geological record. This carbon–oxygen paradox assumes that the δ13C of shallow water carbonates reflects the δ13C of global seawater-dissolved inorganic carbon (DIC). However, the δ13C of modern shallow-water carbonate sediment is higher than expected for calcite or aragonite precipitating from seawater. We explain elevated δ13C in shallow carbonates with a diurnal carbon cycle engine, where daily transfer of carbon between organic and inorganic reservoirs forces coupled changes in carbonate saturation (ΩA) and δ13C of DIC. This engine maintains a carbon-cycle hysteresis that is most amplified in shallow, sluggishly mixed waters with high rates of photosynthesis, and provides a simple mechanism for the observed δ13C-decoupling between global seawater DIC and shallow carbonate, without burying organic matter or generating O2.

英文关键词carbonates carbon isotopes chemostratigraphy paleoclimate
领域地球科学 ; 气候变化 ; 资源环境
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文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/205231
专题地球科学
资源环境科学
气候变化
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GB/T 7714
Emily C. Geyman and Adam C. Maloof. A diurnal carbon engine explains 13C-enriched carbonates without increasing the global production of oxygen[J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA,2019.
APA Emily C. Geyman and Adam C. Maloof.(2019).A diurnal carbon engine explains 13C-enriched carbonates without increasing the global production of oxygen.PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA.
MLA Emily C. Geyman and Adam C. Maloof."A diurnal carbon engine explains 13C-enriched carbonates without increasing the global production of oxygen".PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2019).
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