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Different response of silicate fertilizer having electron acceptors on methane emission in rice paddy soil under green manuring

机译:绿肥下稻田土壤中电子受体硅酸盐肥料对甲烷排放的不同响应

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Cultivation of green manure plants during the fallow season in rice paddy soil has been strongly recommended to improve soil properties. However, green manuring may impact greenhouse gas emission, methane (hereafter, CH4) in particular, under the flooded rice cultivation and thus, application of chemical amendments being electron acceptors can be an effective mitigation strategy to reduce CH4 emissions in irrigated rice (Oryza sativa L.) field amended with green manure. To investigate the effect of iron (Fe) slag silicate fertilizer (hereafter, silicate fertilizer), which was effective in reducing CH4 emission and increasing rice productivity, in green manure-amended paddy soil, the aboveground biomass of Chinese milk vetch (hereafter, vetch) was added at rates of 0, 10, 20, and 40 Mg (fresh weight) ha−1 before the application of silicate fertilizer, which was added at rates of 0 and 2.3 Mg ha−1. Silicate fertilization reduced the seasonal CH4 flux by ca. 14.5% and increased rice yield by ca. 15.7% in the control (no vetch application) treatment. However, CH4 production was increased by silicate fertilization in vetch-treated soil particularly at the initial rice growing stage, which was probably due to the enhanced decomposition of added organic matters by the silicate liming effect. In conclusion, silicate fertilization is not effective in reducing CH4 production in green manure-amended rice paddy soils and its use should be properly controlled.
机译:强烈建议在休耕季节在稻田土壤中种植绿色肥料,以改善土壤特性。但是,在水淹水稻种植下,绿色耕作可能会影响温室气体的排放,尤其是甲烷(以下称CH 4 )的排放,因此,使用化学修饰剂作为电子受体可以有效减少温室气体排放。用绿肥修正的灌溉水稻田中CH 4 的排放量。为了研究铁(Fe)矿渣硅酸盐肥料(以下简称硅酸盐肥料)在绿肥改良稻田土壤(地上生物量)中有效减少CH 4 排放并提高稻米产量的作用。在施用硅酸盐肥料之前,先以0、10、20和40 Mg(鲜重)ha -1 的比例添加100毫升的中国鲜紫v(以下称v子)。 0和2.3 Mg ha -1 。硅酸盐施肥使季节性CH 4 通量减少了约。 14.5%的稻米产量提高了约对照(未施肥)处理中占15.7%。然而,尤其是在水稻的最初阶段,通过在紫etch处理过的土壤中施入硅酸盐可以增加CH 4 的产量,这可能是由于硅酸盐的石灰作用增加了添加的有机物的分解。总之,在绿肥改良的水稻田中,硅酸盐施肥不能有效减少CH 4 的产生,应适当控制其使用。

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