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Abstract
This field manipulation study tested the effect of weekly pulses of solutions of NH
4NO
3 and (NH
4)
2SO
4 salts on the evolution of CH
4 and N
2O from peatland soils. Methane and nitrous oxide emission from a nutrient-poor fen in northern Minnesota USA was measured over a full growing season from plots receiving weekly additions of NH
4NO
3 or (NH
4)
2SO
4. At this relatively pristine site, natural additions of N and S in precipitation occur at 8 and 5 kg ha
−1 y
−1, respectively. Nine weekly additions of the dissolved salts were made to increase this to a total deposition of 31 kg N ha
−1 y
−1 on the NH
4NO
3-amended plots and 30 and 29 kg ha
−1 y
−1 of N and S, respectively, in the (NH
4)
2SO
4-amended plots. Methane flux was measured weekly from treatment and control plots and all data comparisons are made on plots measured on the same day. After the onset of the treatments, and over the course of the growing season, CH
4 emission from the (NH
4)
2SO
4-amended plots averaged 163 mg CH
4 m
−2 d
−1, significantly lower than the same-day control plot mean of 259 mg CH
4 m
−2 d
−1 (repeated measures ANOVA). Total CH
4 flux from (NH
4)
2SO
4 treatment plots was one third lower than from control plots, at 11.7 and 17.1 g CH
4 m
−2, respectively. Methane emission from the NH
4NO
3-amended plots (mean of 256 mg CH
4 m
−2 d
−1) was not significantly different from that of controls measured on the same day (mean of 225 mg CH
4 m
−2 d
−1). Total CH
4 flux from NH
4NO
3 treatment plots and same-day controls was 16.9 and 15.1 g CH
4 m
−2, respectively. In general, stable, relatively warm and wet periods followed by environmental 'triggers' such as rainfall or changes in water table or atmospheric pressure, which produced a CH
4 'pulse' in the other plots, produced no observable peak in CH
4 emission from the (NH
4)
2SO
4-amended plots. Nitrous oxide emission from all of the plots was below the detection limit over the course of the experiment.
Citation
Dise, Nancy B.; Verry, Elon S. 2001. Suppression of peatland methane emission by cumulative sulfate deposition in simulated acid rain. Biogeochemistry. 53: 143-160.