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张慧,辛明月,高全,等.辽宁省水稻田甲烷排放时空变化及影响因素[J].农业工程,2023,13(3):67-71. DOI: 10.19998/j.cnki.2095-1795.2023.03.012
引用本文: 张慧,辛明月,高全,等.辽宁省水稻田甲烷排放时空变化及影响因素[J].农业工程,2023,13(3):67-71. DOI: 10.19998/j.cnki.2095-1795.2023.03.012
ZHANG Hui,XIN Mingyue,GAO Quan,et al.Spatial-temporal variation of methane emissions from rice fields and influencing factors in Liaoning Province[J].Agricultural Engineering,2023,13(3):67-71. DOI: 10.19998/j.cnki.2095-1795.2023.03.012
Citation: ZHANG Hui,XIN Mingyue,GAO Quan,et al.Spatial-temporal variation of methane emissions from rice fields and influencing factors in Liaoning Province[J].Agricultural Engineering,2023,13(3):67-71. DOI: 10.19998/j.cnki.2095-1795.2023.03.012

辽宁省水稻田甲烷排放时空变化及影响因素

Spatial-temporal Variation of Methane Emissions from Rice Fields and Influencing Factors in Liaoning Province

  • 摘要: 水稻田是甲烷(CH4)主要排放源,应用涡动相关观测验证了DNDC模型准确性,进而模拟了辽宁省2016—2020年甲烷排放量。结果表明,DNDC模拟甲烷排放量与涡动相关观测结果有较好一致性(P<0.001);辽宁省2016—2020年水稻田甲烷年平均排放量7.1万t,主要分布在沈阳市和盘锦市。甲烷排放速率(F甲烷)随着温度、土壤有机碳和土壤容重增加而增加,而降水量对F甲烷的影响存在阈值。当6—7月降水累积量为158~317 mm时,F甲烷随降水增加而增加,否则F甲烷随着降水量减小而增加。在阈值之内降水量通过影响土壤环境直接影响F甲烷,但当降水过多或过少时,其通过温度间接影响F甲烷。最大限度延长晒田时间是减少甲烷排放的有效措施。研究结果可为辽宁省水稻田甲烷排放评估、预测和制定减排调控措施提供理论支持。

     

    Abstract: Rice fields are main source of methane(CH4)emissions, accuracy of DNDC model was verified by eddy covariance, and then DNDC model was used to simulate methane emissions of Liaoning Province from 2016 to 2020.Results suggested that there was a good agreement between DNDC model and eddy covariance(P<0.001).Average annual methane emission was 71 000 tons and mainly distributed in Shenyang City and Panjin City.Methane emission rate increased with temperature, soil organic carbon and soil bulk density.However, there was a threshold value for influence of precipitation on methane emission rate.When accumulated precipitation in June and July was from 158 mm to 317 mm, methane emission rate had a positive correlation with precipitation.Otherwise there was an negative correlation between methane emission rate and precipitation.Within threshold, precipitation changed soil enviroment and directly affected methane emission rate, but when precipitation was too much or too little, it indirectly affected methane emission rate through temperature.Maximum lengthening sun-drying time was an effective operation to reduce methane emission.Research results could provide theoretical support for assessment, prediction and control measures of methane emission of rice fields in Liaoning Province.

     

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