Emission of greenhouse gases and soil carbon sequestration in a riparian marsh wetland in central Ohio
Wetlands are a C sink, but they also account for a large natural source of greenhouse gases (GHG), particularly methane (CH 4 ). Soils of wetlands play an important role in alleviating the global climate change regardless of the emission of CH 4 . However, there are uncertainties about the amount of...
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Veröffentlicht in: | Environmental monitoring and assessment 2017-11, Vol.189 (11), p.580-12, Article 580 |
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Zusammenfassung: | Wetlands are a C sink, but they also account for a large natural source of greenhouse gases (GHG), particularly methane (CH
4
). Soils of wetlands play an important role in alleviating the global climate change regardless of the emission of CH
4
. However, there are uncertainties about the amount of C stored and emitted from wetlands because of the site specific factors. Therefore, the present study was conducted in a temperate riverine flow-through wetland, part of which was covered with emerging macrophyte
Typhus latifolia
in central Ohio, USA, with the objective to assess emissions of GHGs (CH
4,
CO
2
, N
2
O) and measure C and nitrogen (N) stocks in wetland soil in comparison to a reference upland site. The data revealed that CH
4
emission from the open and vegetated wetland ranged from 1.03–0.51 Mg C/ha/y and that of CO
2
varied from 1.26–1.51 Mg C/ha/y. In comparison, CH
4
emission from reference upland site was negligible (0.01 Mg C/ha/y), but CO
2
emission was much higher (3.24 Mg C/ha/y). The stock of C in wetland soil was 85 to 125 Mg C/ha up to 0.3 m depth. The average rate of emission was 2.15 Mg C/ha/y, but the rate of sequestration was calculated as 5.55 Mg C/ha/y. Thus, the wetland was actually a C sink. Emission of N
2
O was slightly higher in vegetated wetland (0.153 mg N
2
O-N/m
2
/h) than the open wetland and the reference site (0.129 mg N
2
O-N/m
2
/h). Effect of temperature on emission of GHGs from the systems was also studied. |
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ISSN: | 0167-6369 1573-2959 |
DOI: | 10.1007/s10661-017-6276-9 |