萌妹社区


Undersea methane could be contributor to increased ocean acidity, researchers find

(萌妹社区Org.com) -- A North Carolina State University researcher is part of a team which has found that methane from 鈥渃old seeps鈥 鈥 undersea areas where fluids bubble up through sediments at the bottom of the ocean 鈥 could be contributing to the oceans鈥 increasing acidity and stressing already delicate undersea ecosystems.

Oceanic microorganisms and bacteria survive by consuming dissolved organic carbon, or DOC. A byproduct of this consumption is CO2 鈥 鈥 which, in large enough concentrations, makes seawater more acidic.

Dr. Chris Osburn, assistant professor of marine science at NC State, and a research team led by geologists from the U.S. Geological Survey found high levels of methane-derived DOC in the deep water over cold seeps in two areas of the Pacific Ocean. Their findings appear online in Nature Geoscience.

鈥淣ormally, DOC primarily comes from the degradation of phytoplankton (algae), or from river discharge into the ocean,鈥 Osburn says. 鈥淔inding DOC that comes from is a new part of the carbon cycle that hasn鈥檛 really been accounted for.鈥

Now that they have found methane-derived DOC, the researchers need to determine if it is found in other cold seeps worldwide, and whether or not it is labile, or easily used by the microorganisms that survive on DOC.

鈥淏ased on what we found, up to 30 percent of the Pacific Ocean鈥檚 deep water DOC could be methane-derived,鈥 Osburn says. 鈥淚f it is utilized by marine microorganisms, methane-derived DOC could be a component of deep ocean ecosystems. Moreover, microbial processing of this DOC could be contributing to increased CO2 in the deep ocean and thus to 补肠颈诲颈蹿颈肠补迟颈辞苍.鈥

More information:

Citation: Undersea methane could be contributor to increased ocean acidity, researchers find (2010, December 7) retrieved 25 May 2025 from /news/2010-12-undersea-methane-contributor-ocean-acidity.html
This document is subject to copyright. Apart from any fair dealing for the purpose of private study or research, no part may be reproduced without the written permission. The content is provided for information purposes only.

Explore further

Scientists expand understanding of how river carbon impacts the Arctic Ocean

0 shares

Feedback to editors