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Carbon Dioxide Flux from Rice Paddy Soils in Central China: Effects of Intermittent Flooding and Draining Cycles

机译:中国中部稻田土壤中的二氧化碳通量:间歇性洪水和排水周期的影响

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摘要

A field experiment was conducted to (i) examine the diurnal and seasonal soil carbon dioxide (CO2) fluxes pattern in rice paddy fields in central China and (ii) assess the role of floodwater in controlling the emissions of CO2 from soil and floodwater in intermittently draining rice paddy soil. The soil CO2 flux rates ranged from −0.45 to 8.62 µmol.m−2.s−1 during the rice-growing season. The net effluxes of CO2 from the paddy soil were lower when the paddy was flooded than when it was drained. The CO2 emissions for the drained conditions showed distinct diurnal variation with a maximum efflux observed in the afternoon. When the paddy was flooded, daytime soil CO2 fluxes reversed with a peak negative efflux just after midday. In draining/flooding alternating periods, a sudden pulse-like event of rapidly increasing CO2 efflux occured in response to re-flooding after draining. Correlation analysis showed a negative relation between soil CO2 flux and temperature under flooded conditions, but a positive relation was found under drained conditions. The results showed that draining and flooding cycles play a vital role in controlling CO2 emissions from paddy soils.
机译:进行了田间试验,以(i)研究中国中部稻田的昼夜和季节性土壤二氧化碳(CO2)通量模式,以及(ii)断续评估洪水在控制土壤和洪水中CO2排放中的作用排干稻田土壤。水稻生长季土壤CO2通量速率在-0.45至8.62 µmol.m -2 .s -1 之间。淹水时,稻田土壤中CO2的净流出量比排水时低。排水条件下的CO2排放量表现出明显的昼夜变化,并在下午观测到最大外排量。当稻田被水淹没时,白天的土壤CO2通量在正午后刚好反向反转,并达到峰值。在排水/注水交替周期中,响应于排水后的再次注水,突然出现了脉冲状的事件,迅速增加了CO2的排放量。相关分析表明,淹水条件下土壤CO2通量与温度呈负相关,而排水条件下则呈正相关。结果表明,排水和洪水循环在控制稻田土壤CO2排放中起着至关重要的作用。

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