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首页> 外文期刊>The Philippine Agricultural Scientist >Spatial and Temporal Variations in Methane Fluxes from Irrigated Lowland Rice Fields
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Spatial and Temporal Variations in Methane Fluxes from Irrigated Lowland Rice Fields

机译:灌溉低地稻田甲烷通量的时空变化

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摘要

An assessment of spatial and temporal variations in methane (CH(4)) emission was conducted in three experimental fields (UQ, UY and UE) of the International Rice Research Institute Experimental Farm in Bay, Laguna, Philippines during the 2009 dry season. Aside from CH(4) fluxes, the following parameters were also determined: hot water-extractable C (HWEC), floodwater temperature (FVVT), floodwater depth (FWD) and plant height. Field sampling was conducted using static chambers and CH4 concentrations were analyzed using a gas chromatograph. The highest average emission rate was observed in field UQ, followed by UE and UY (651, 107 and 95 mg CH(4) m(-2) d(-1), respectively). The UQ field also had the highest average HWEC (618 mg kg(-1) compared with 496 for UY 496 and 482 for UE). Significant temporal variations in CH4 emission, HWEC and FWT were observed within each field. Stepwise multiple regression analysis showed that HWEC, plant height, FVVT and FWD accounted for 62% of the spatial and temporal variabilities in CH(4) fluxes. Soil HWEC showed the greatest contribution (R(2)= 0.46, P<0.0001), followed by plant height (R(2)= 0.11, P<0.0001), FWT (R(2)=0.03, P<0.04) and FWD (partial R(2)=0.02, P<0.07).
机译:在2009年旱季期间,在菲律宾拉古纳湾的国际水稻研究所实验农场的三个实验场(UQ,UY和UE)中对甲烷(CH(4))排放的时空变化进行了评估。除了CH(4)通量外,还确定了以下参数:热水可提取碳(HWEC),洪水温度(FVVT),洪水深度(FWD)和工厂高度。使用静态室进行现场采样,并使用气相色谱仪分析CH4浓度。在现场UQ中观察到最高的平均发射率,其次是UE和UY(分别为651、107和95 mg CH(4)m(-2)d(-1))。 UQ字段的平均HWEC也最高(618 mg kg(-1),UY 496为496,UE为482)。在每个场中观察到CH4排放,HWEC和FWT的显着时间变化。逐步多元回归分析表明,HWEC,株高,FVVT和FWD占CH(4)通量的时空变异的62%。土壤HWEC表现出最大的贡献(R(2)= 0.46,P <0.0001),其次是株高(R(2)= 0.11,P <0.0001),FWT(R(2)= 0.03,P <0.04)和FWD(部分R(2)= 0.02,P <0.07)。

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