首页> 外文期刊>Nutrient Cycling in Agroecosystems >Methane and nitrous oxide emissions from irrigated lowland rice paddies after wheat straw application and midseason aeration
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Methane and nitrous oxide emissions from irrigated lowland rice paddies after wheat straw application and midseason aeration

机译:施用麦草和季间通气后低地稻田的甲烷和一氧化二氮排放

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摘要

Straw application and midseason drainage play role in controlling methane (CH4) and nitrous oxide (N2O) emissions from rice paddy fields, but little information is available on their integrative effect on CH4 and N2O emissions. A two-year field experiment was conducted to study the combined effect of timing and duration of midseason aeration and wheat straw incorporation on mitigation of global warming potential (GWP) of CH4 and N2O emissions from irrigated lowland rice paddy fields. Results showed that incorporation of wheat straw increased CH4 by a factor of 5-9 under various water regimes, but simultaneously decreased N2O emission by 19-42 % during the rice growing season. Without straw incorporation, prolonged aeration significantly reduced the net 100-year GWP of CH4 and N2O emissions by 6 %, but also decreased rice production when compared with normal aeration. With straw incorporation, the lowest GWP was found by early aeration, which reduced GWP by 7 and 20 % in 2007 and 2008, respectively. Estimation of net GWPs of CH4 and N2O emissions indicated that early midseason drainage with straw incorporation offered the potential to mitigate CH4 and N2O emissions from irrigated lowland rice paddies in China
机译:秸秆还田和季间排水在控制稻田甲烷(CH4)和一氧化二氮(N2O)排放中发挥着作用,但是关于它们对CH4和N2O排放的综合影响的信息很少。进行了为期两年的田间试验,研究了季节通气时间和持续时间以及掺入麦秸对缓解灌溉低地稻田CH4和N2O排放的全球变暖潜势(GWP)的综合影响。结果表明,在不同的水分状况下,麦秸的掺入使CH4含量增加5-9倍,但在水稻生长季节同时将N2O排放降低19-42%。如果不加入秸秆,则长时间的通气与正常通气相比,可显着降低100%的CH4和N2O净排放量的GWP净值,但也会降低稻谷的产量。掺入秸秆后,早期充气发现了最低GWP,这在2007年和2008年分别使GWP降低了7%和20%。估算CH4和N2O排放的净全球升温潜能值表明,在稻草混入的季节中期早期排水提供了减轻中国灌溉低地稻田CH4和N2O排放的潜力

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