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Incorporation of rice straw mitigates CH4 and N2O emissions in water saving paddy fields of Central Vietnam

机译:稻草减灾CH4和N2O排放中央越南节水稻田的融合

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This study evaluated the effects of rice straw and water regimes on CH4 and N2O emissions from paddy fields for two rice growing seasons (summer 2014 and spring 2015). Water regimes included alternating wet-dry irrigation (AWD) maintained at three levels (-5 cm, - 10 cm and -15 cm) in comparison to continuous flooding irrigation (CF). Rice straw (5 t ha(-1)) was incorporated into the top soil (0 - 15 cm), distributed and burned in situ. Results showed that using burned in situ rice straw was found to reduce seasonal cumulative CH4 emission (24-34% in summer; 18-28% in spring), N2O emission (21-32% in summer; 22-29% in spring) and lower rice yield (8-9%) than rice straw incorporation into top soil. AWD methods reduced the amount of CH4 production (22.6-41.5%) and increased N2O emission (25-26%) without any decrease in rice yield. Rice straw incorporation into the top soil with AWD had higher water productivity (23-37%) than rice straw when burned in situ with CF. The results conclude that AWD and rice straw management can be employed as mitigation strategy for CH4 and N2O emissions from paddy fields in Central Vietnam.
机译:本研究评估了稻草和水域对两种稻田生长季节的CH4和N2O排放的影响(2014年夏天和2015年春季)。与连续洪水冲洗(CF)相比,水制度包括在三个水平(-5厘米 - -10cm和-15cm)的交替湿干燥灌溉(AWD)。稻草(5 t ha(-1))纳入顶部土壤(0-15cm),分布并原位燃烧。结果表明,发现使用燃烧的原位稻草秸秆减少季节性累积CH4排放(夏季24-34%;春季18-28%),N2O排放(夏季21-32%;春季22-29%)和较低的水稻产量(8-9%)比稻草掺入顶部土壤。 AWD方法减少了CH4生产量(22.6-41.5%)并增加了N 2 O发射(25-26%),而不会降低水稻产量。稻草掺入具有AWD的顶部土壤,水生产率(23-37%)比稻草与稻草原位燃烧时烧伤。结果得出结论,AWD和稻草管理可作为越南中部稻田的CH4和N2O排放的缓解策略。

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