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Effects of the nitrification inhibitor dicyandiamide (DCD) on gross N transformation rates and mitigating N2O emission in paddy soils

机译:硝化抑制剂双氰胺(DCD)对稻田土壤总氮转化率和减少N2O排放的影响

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The nitrification inhibitor dicyandiamide (DCD, C2H4N4) is effective in suppressing nitrification and N2O emission in many agro-ecosystems. However, whether DCD affects other nitrogen (N) transformation processes, and the mechanisms of its inhibitory effects on N2O emission, are not fully understood. In the present study, we conducted a N-15 dilution incubation experiment to investigate the effects of DCD on gross N transformation rates and N2O emissions in two paddy soils under an intensive irrigated rice-upland crop rotation system. The duration of microbial inhibition by DCD was also evaluated. We used the numerical model FLUAZ, based on the N-15 tracing technique, to calculate gross N transformation rates. The results showed that DCD could effectively inhibit gross N nitrification in the tested soils; however, no influence on N mineralization and immobilization was detected. Lower N2O emissions from both soils were observed in the presence of DCD, due to the dual functions of DCD on both nitrification rates and the fraction of N2O in nitrification products. While, further study to confirm our results by direct measurement of DCD in reducing the fraction of N2O in nitrification products should be conducted. The inhibitory effect of DCD on gross N nitrification and N2O emission decreased over time, and was not statistically significant four weeks after the addition of this inhibitor to the soils
机译:硝化抑制剂双氰胺(DCD,C2H4N4)在许多农业生态系统中可有效抑制硝化和N2O排放。但是,DCD是否会影响其他氮(N)转化过程及其抑制N2O排放的机理尚不完全清楚。在本研究中,我们进行了N-15稀释温育实验,以研究DCD对集约灌溉水旱稻轮作系统下两种稻田土壤总氮转化率和N2O排放的影响。还评估了DCD抑制微生物的持续时间。我们使用基于N-15跟踪技术的数值模型FLUAZ计算总的N转化率。结果表明,DCD可有效抑制试验土壤中的总氮硝化。但是,没有发现对氮矿化和固着的影响。由于DCD对硝化速率和硝化产物中N2O的分数都有双重作用,因此在DCD存在下,两种土壤的N2O排放量都较低。同时,应进行进一步研究以通过直接测量DCD来减少硝化产物中N2O的含量来证实我们的结果。 DCD对总氮硝化和N2O排放的抑制作用随时间而降低,在向土壤中添加这种抑制剂四周后,其统计学意义不显着。

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