Quantifying the Extent of Authigenic Carbonate Formation in Shallow Marine Sediments Through a Correlation Between Carbonate Precipitation Rate and Sulfate Flux

Author:

Hu Yu1,Luo Min12ORCID,Peckmann Jörn3ORCID,Zhang Xinxin1,Chen Linying1,Feng Junxi45,Liang Qianyong45,Chen Duofu12ORCID,Feng Dong12ORCID

Affiliation:

1. College of Marine Sciences Shanghai Ocean University Shanghai China

2. Laboratory for Marine Mineral Resources Qingdao National Laboratory for Marine Science and Technology Qingdao China

3. Center for Earth System Research and Sustainability Institute for Geology Universität Hamburg Hamburg Germany

4. National Engineering Research Center of Gas Hydrate Exploration and Development Guangzhou China

5. MLR Key Laboratory of Marine Mineral Resources Guangzhou Marine Geological Survey Guangzhou China

Abstract

AbstractThe accumulation of authigenic carbonate in marine sediments has been regarded as a significant contributor to the carbon cycle over Earth's history. However, accurate quantification of the extent of authigenic carbonate formation in both modern and ancient oceans has been challenging due to limited approaches. Here, we analyzed calcium, magnesium, dissolved inorganic carbon, and alkalinity pore‐water profiles of 153 sites influenced by methane diffusion from the northern South China Sea. By combining these data with published data of diffusive sulfate flux, we found a significant positive correlation between carbonate precipitation rate and sulfate flux in the subseafloor. This correlation can be used to quantify the regional extent of authigenic carbonate formation, representing an advantage over a spatial interpolation approach. We therefore propose that the observed correlation can serve as a new approach for quantifying authigenic carbonate formation in shallow sediments along continental margins for both modern and ancient oceans.

Funder

National Natural Science Foundation of China

Publisher

American Geophysical Union (AGU)

Subject

General Earth and Planetary Sciences,Geophysics

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