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Methane emission from fields with differences in nitrogen fertilizers and rice varieties in Taiwan paddy soils

机译:台湾稻田不同氮肥和水稻品种田间甲烷排放

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Flooded rice fields are one of the major biogenic methane sources. In this study, methane emission rates were measured after transplanting in paddy fields with application of two kinds of nitrogen fertilizers (ammonium sulfate, NH_4~+-N and potassium nitrate, NO_3~--N) and with two kinds of rice varieties (Japonica and Indica). The experiment was conducted in fields located at Tainan District Agricultural Improvement Station in Chia-Yi county (23°5′08″N, 120°6′26″E) of southern Taiwan throughout the first and the second crop seasons in 1999. The seasonal methane flux in the first crop season with NH_4~+-N and NO_3~--N ranged from 2.48 to 2.78 and from 8.65 to 9.22 gCH_4m~2; and the values ranged 24.6-34.2 and 36.4-52.6 gCH_4m~2 in the second crop season, respectively. In the first crop season, there were significantly increased 3.1-3.7-fold in methane emission fluxes due to plantation of Indica rice. In comparison of two rice varieties, the Indica rice variety showed a tendency for larger methane emission than the Japonica rice variety in the second crop season. Moreover, ammonium sulfate treatment significantly reduced CH_4 emissions by 37-85% emissions compared to potassium nitrate plots. It was concluded that the CH_4 emission was markedly dependent on the type of nitrogen fertilizer and rice variety in Taiwan paddy soils
机译:稻田被淹是主要的生物甲烷来源之一。在这项研究中,使用两种氮肥(硫酸铵,NH_4〜+ -N和硝酸钾,NO_3〜--N)和两种水稻品种(粳稻),对稻田移栽后甲烷排放率进行了测量。和印度)。在1999年的第一个和第二个作物季节,该实验是在台湾南部嘉义县台南区农业改良站(23°5′08″ N,120°6′26″ E)的田间进行的。 NH_4〜+ -N和NO_3〜--N的第一季作物的季节甲烷通量范围为2.48至2.78和8.65至9.22 gCH_4m〜2;在第二个作物季节,该值分别为24.6-34.2和36.4-52.6 gCH_4m〜2。在第一个作物季节,由于种植rice稻,甲烷排放通量显着增加了3.1-3.7倍。与两个水稻品种相比,在第二个作物季节,the稻品种的甲烷排放量比粳稻品种大。此外,与硝酸钾样地相比,硫酸铵处理可将CH_4排放量显着减少37-85%。结论是台湾稻田CH_4的排放显着取决于氮肥类型和水稻品种

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