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Seasonal Agricultural Wetlands Act As Potential Source of N2O and CH4 Emissions

Catena(2022)

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摘要
Seasonal wetlands and depressions in agricultural fields that accumulate nutrients from runoff water might act as hotspots of nitrous oxide (N2O) and methane (CH4) emissions. However, the spatiotemporal pattern of these gases from different parts of agricultural fields had not been compared. A two-year field experiment was conducted in Ontario, Canada, to test whether field locations with higher wetness act as N2O and CH4 hotspots. The objectives included, i) to classify agricultural field using topographical wetness index (TWI), ii) to determine the spatiotemporal patterns of N2O, CH4, and soil properties from TWI classes; and iii) to determine the impact of soil variables on N2O and CH4 emission prediction. The field was divided into four classes based on TWI, i) low TWI (C1; steep slopes), ii) medium TWI and slopes (C2), iii) Higher TWI (C3; low slopes), and iv) very high TWI (C4; seasonal wetlands and depressions). Each TWI class had six sampling points as replicates to collect soil and gas samples during corn (2019) and soybean (2020) seasons. TWI classes had a significant impact on N2O and CH4 emissions. Mean maximum and minimum N2O emissions were observed during corn season from C4 (153 +/-& nbsp;34) and C1 (69 +/-& nbsp;35 mu g N2O-N m (-2)h(- 1)), respectively. However, during soybean season, C1 had higher (70 +/-& nbsp;1), and C4 had lower average (26.5 +/-& nbsp;8 mu g N2O-N m( -2)h(- 1)) emissions. Higher mean CH4 emissions were observed from C4 and C1, respectively, during corn (1264 +/-& nbsp;778) and soybean (60 +/-& nbsp;44 mu g CH4-C m( -2)h(- 1)) seasons. Regression analysis revealed that N2O emissions were mainly controlled by nitrate, electrical conductivity, and moisture during corn and ammonium, pH, and nitrate during soybean season. Similarly, CH4 emissions were regulated by moisture and clay during corn season and ammonium and pH during soybean season. These relationships could help upscale greenhouse gas emissions at regional levels and formulate mitigation strategies.
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关键词
Topographical wetness index,Seasonal wetlands,Slope,Nitrous oxide,Methane,Global warming potential
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