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首页> 外文期刊>Scientific reports. >Nitrous oxide and nitric oxide emissions from lowland rice cultivation with urea deep placement and alternate wetting and drying irrigation
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Nitrous oxide and nitric oxide emissions from lowland rice cultivation with urea deep placement and alternate wetting and drying irrigation

机译:尿素深埋和交替湿润和干燥灌溉的低地水稻种植产生的一氧化二氮和一氧化氮排放量

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摘要

Urea deep placement (UDP) and the alternate wetting and drying (AWD) irrigation method are two promising rice production technologies. However, studies on the impact of UDP under AWD irrigation on nitrous oxide (N2O) and nitric oxide (NO) emissions are limited. In this study, the effects of UDP with AWD irrigation on these emissions, nitrogen use efficiency (NUE), and rice yields are investigated, compared to conventional broadcast application. N2O and NO emissions from three fertilizer treatments – no nitrogen, UDP, and broadcast application of prilled urea (PU) – were measured. Measurements were taken using an automated gas sampling and analysis system continuously for two consecutive Boro (dry) rice seasons. N2O emission peaks were observed after broadcast application of PU but not after UDP. In contrast, large spikes in N2O emission were observed after UDP, compared to broadcast application, during dry periods. Despite differences in emission peaks, seasonal cumulative N2O emissions from UDP and broadcast treatments were similar. However, NO emissions were minimal and unaffected by UDP or AWD. UDP increased rice yields by 28% and N recovery efficiency by 167%, compared to broadcast urea. This study demonstrates that UDP with AWD irrigation can increase yields and NUE without increasing N2O and NO emissions.
机译:尿素深层浇灌(UDP)和交替的干湿交替灌溉(AWD)灌溉技术是两种有前途的水稻生产技术。但是,有关AWD灌溉下UDP对一氧化二氮(N2O)和一氧化氮(NO)排放的影响的研究是有限的。在这项研究中,与常规广播应用相比,研究了采用AWD灌溉的UDP对这些排放,氮素利用效率(NUE)和水稻产量的影响。测量了三种肥料处理过程中的N2O和NO排放-无氮,UDP和撒播的尿素(PU)。使用自动气体采样和分析系统连续两个Boro(干)稻季进行测量。在广播应用PU之后观察到N2O发射峰,但在UDP之后观察不到。相比之下,与广播应用相比,在干旱时期,UDP传输后会观察到N2O排放的大峰值。尽管排放峰值有所不同,但UDP和广播处理的季节性累积N2O排放却相似。但是,NO的排放量很小,并且不受UDP或AWD的影响。与散装尿素相比,UDP使稻米产量提高28%,氮素回收效率提高167%。这项研究表明,带AWD灌溉的UDP可以增加产量和NUE,而不会增加N2O和NO的排放。

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