Loading…

Effects of the addition of nitrogen and sulfate on CH4 and CO2 emissions, soil, and pore water chemistry in a high marsh of the Min River estuary in southeastern China

Exogenous nitrogen (N) and sulfate (SO42−), resulting from human activity, can strongly influence the emission of CH4 and CO2 from soil ecosystems. Studies have reported the effects of N and SO42− on CH4 and CO2 emissions from inland peatlands and paddies. However, very few studies have presented ye...

Full description

Saved in:
Bibliographic Details
Published in:The Science of the total environment 2017-02, Vol.579, p.292-304
Main Authors: Hu, Minjie, Wilson, Benjamin J., Sun, Zhigao, Ren, Peng, Tong, Chuan
Format: Article
Language:English
Subjects:
Citations: Items that this one cites
Items that cite this one
Online Access:Get full text
Tags: Add Tag
No Tags, Be the first to tag this record!
Description
Summary:Exogenous nitrogen (N) and sulfate (SO42−), resulting from human activity, can strongly influence the emission of CH4 and CO2 from soil ecosystems. Studies have reported the effects of N and SO42− on CH4 and CO2 emissions from inland peatlands and paddies. However, very few studies have presented year-round data on the effects of the addition of N and SO42− on CH4 and CO2 emissions in estuarine marshes. The effects of the addition of N and SO42− on the emission of CH4 and CO2 were investigated in a Cyperus malaccensis marsh in the high tidal flat of the Min River estuary of southeastern China from September 2014 to August 2015. Dissolved NH4Cl, KNO3, and K2SO4 were applied every month, in doses of 24gN/SO42−m−2·yr−1. The emission of CH4 and CO2 showed distinct monthly and seasonal variations. Compared with the control, the addition of NH4Cl and NH4NO3+K2SO4 showed increases in CH4 fluxes (p0.05). NH4Cl had a positive impact on CO2 emissions (p0.05). Correlation analysis found that soil sulfate concentration, nitrogen availability and enzyme activity were the dominant factors influencing CH4 and CO2 variation. Our findings suggest that CH4 and CO2 emissions were influenced more by ammonium than by nitrate. We propose that the suppressive effect of additional sulfate on CH4 production is insignificant, due to which the inhibition may be overestimated in the estuarine brackish marsh. [Display omitted] •Effects of N and SO42− on CH4 and CO2 emissions were studied in an estuarine marsh.•CH4 and CO2 emissions were influenced more by ammonium than by nitrate.•CH4 fluxes from a sulfate saturated marsh did not respond to additional sulfate.•Nitrogen, sulfate availability and enzyme activity affected CH4 and CO2 emissions.
ISSN:0048-9697
1879-1026
DOI:10.1016/j.scitotenv.2016.11.103