Diffusive nitrous oxide (N2O) fluxes across the sediment-water-atmosphere interfaces in aquaculture shrimp ponds in a subtropical estuary: implications for climate warming

Full text not archived in this repository.

Please see our End User Agreement.

It is advisable to refer to the publisher's version if you intend to cite from this work. See Guidance on citing.

Add to AnyAdd to TwitterAdd to FacebookAdd to LinkedinAdd to PinterestAdd to Email

Tian, Y., Yang, P., Yang, H. orcid id iconORCID: https://orcid.org/0000-0001-9940-8273, Wang, H., Zhang, L., Tong, C., Lai, D. Y.F., Lin, Y., Tan, L., Hong, Y., Tang, C. and Tang, K. W. (2023) Diffusive nitrous oxide (N2O) fluxes across the sediment-water-atmosphere interfaces in aquaculture shrimp ponds in a subtropical estuary: implications for climate warming. Agriculture, Ecosystems & Environment, 341. 108218. ISSN 1873-2305 doi: 10.1016/j.agee.2022.108218

Abstract/Summary

Emissions of the potent greenhouse gas nitrous oxide (N2O) from aquaculture remain a large knowledge gap in the global N2O budget. The water column and the sediment of aquaculture ponds present very different environmental conditions, but their relative contributions to N2O production and emission are poorly resolved. We sampled three aquaculture ponds in the Min River Estuary in southeastern China monthly throughout the farming season. Based on the dissolved N2O concentrations within the water column and in sediment porewater, we calculated the diffusive N2O fluxes across the water-atmosphere interface (WAI) and sediment-water interface (SWI). The diffusive N2O flux averaged 216.9 nmol m−2 h−1 across WAI and 16.0 nmol m−2 h−1 across SWI. The estimated N2O production rate under steady-state condition was 0.13 nmol L−1 h−1 in the water column and 1.07 nmol L−1 h−1 in sediment porewater. Hence, the water column compartment and the sediment compartment of the aquaculture ponds played different roles in N2O dynamics. Based on our data, it is calculated that China’s coastal aquacultural ponds would emit 0.2 Gg N2O yr−1, or less than 1% of all aquaculture N2O emission in China. Therefore, coastal shrimp aquaculture has a relative minor climate impact compared to other aquaculture operations. Future studies should examine the role of N-cycling functional genes on N2O production and the mechanisms regulating N2O emission from aquaculture ecosystems.

Altmetric Badge

Item Type Article
URI https://reading-clone.eprints-hosting.org/id/eprint/121850
Identification Number/DOI 10.1016/j.agee.2022.108218
Refereed Yes
Divisions Science > School of Archaeology, Geography and Environmental Science > Department of Geography and Environmental Science
Publisher Elsevier
Download/View statistics View download statistics for this item

University Staff: Request a correction | Centaur Editors: Update this record

Search Google Scholar