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Response of nitric and nitrous oxide fluxes to N fertilizer application in greenhouse vegetable cropping systems in southeast China

机译:东南大棚蔬菜种植系统中一氧化氮和一氧化二氮通量对氮肥的响应

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It is of great concern worldwide that active nitrogenous gases in the global nitrogen cycle contribute to regional and global-scale environmental issues. Nitrous oxide (N2O) and nitric oxide (NO) are generally interrelated in soil nitrogen biogeochemical cycles, while few studies have simultaneously examined these two gases emission from typical croplands. Field experiments were conducted to measure N2O and NO fluxes in response to chemical N fertilizer application in annual greenhouse vegetable cropping systems in southeast China. Annual N2O and NO fluxes averaged 52.05 and 14.87?μg N m(-2) h(-1) for the controls without N fertilizer inputs, respectively. Both N2O and NO emissions linearly increased with N fertilizer application. The emission factors of N fertilizer for N2O and NO were estimated to be 1.43% and 1.15%, with an annual background emission of 5.07?kg N2O-N ha(-1) and 1.58?kg NO-N ha(-1), respectively. The NO-N/N2O-N ratio was significantly affected by cropping type and fertilizer application, and NO would exceed N2O emissions when soil moisture is below 54% WFPS. Overall, local conventional input rate of chemical N fertilizer could be partially reduced to attain high yield of vegetable and low N2O and NO emissions in greenhouse vegetable cropping systems in China.
机译:在全球范围内引起极大关注的是,全球氮气循环中的活性含氮气体导致了区域和全球范围内的环境问题。一氧化二氮(N2O)和一氧化氮(NO)通常与土壤氮生物地球化学循环相关,而很少有研究同时检查这两种典型农田的气体排放。在中国东南部一年一度的温室蔬菜种植系统中,进行了田间试验,以测量响应化学氮肥施用而产生的N2O和NO流量。没有输入氮肥的对照的年N2O和NO通量分别为52.05和14.87?g Nm(-2)h(-1)。 N2O和NO排放均随氮肥施用量线性增加。氮肥对N2O和NO的排放因子估计为1.43%和1.15%,年背景排放量为5.07?kg N2O-N ha(-1)和1.58?kg NO-N ha(-1),分别。 NO-N / N2O-N比值受作物类型和肥料施用的显着影响,当土壤水分低于WFPS 54%时,NO将超过N2O排放量。总体而言,在中国的温室蔬菜种植系统中,可以部分降低当地传统的化学氮肥投入率,以实现蔬菜的高产量和低N2O和NO排放。

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