Agriculture Research School, Nuclear Science and Technology Research Institute (NSTRI), P. O. Box: 31485-498, Karaj, Iran.
Justus Liebig University Giessen, Giessen, Germany.
Sci Rep. 2022 Nov 1;12(1):18424. doi: 10.1038/s41598-022-23030-1.
Reducing nitrogen losses can be accomplished by mixing fertilizers with nitrification inhibitors (NI). In some agricultural systems, increasing soil N supply capacity by the use of NI could lead to improved N use efficiency (NUE) and increased crop yields. This study examined the effect of different N rates and NI in maize in the north of Iran. The maize was fertilized with urea at three levels (69, 115 and 161 kg N.ha) alone or with nitrapyrin as NI. Increasing the N application rate resulted in a considerable rise in growing-season NO emissions. When nitrapyrin was used, NO emissions were dramatically reduced. NI treatment reduced NO emissions in the growth season by 88%, 88%, and 69% in 69, 115, and 161 kg of N.ha, respectively. NI treatment reduced yield-scaled NO emissions; the lowest quantity of yield-scaled NO was found in 69 N + NI (0.09 g NO-N kg N uptake). Additionally, grain yield increased by 19%, 31% and 18.4% after applying NI to 69 N, 115 N, and N69, N115 and N161. Results showed that 115 N + NI and N69 treatments showed the highest (65%) and lowest (29%) NUEs, respectively. Finally, our findings show that NI can reduce NO emissions while increasing NUE and yield, but that the application method and rate of nitrapyrin application need to be improved in order to maximize its mitigation potential.
减少氮素损失可以通过将肥料与硝化抑制剂(NI)混合来实现。在一些农业系统中,通过使用 NI 来增加土壤氮供应能力,可以提高氮利用效率(NUE)和增加作物产量。本研究考察了不同氮素用量和硝化抑制剂在伊朗北部玉米中的效应。玉米用尿素在三个水平(69、115 和 161 kg N.ha)单独施肥或与作为 NI 的硝呋吡咯混合施肥。增加氮素用量会导致生长季节 NO 排放显著增加。当使用硝呋吡咯时,NO 排放会大大减少。NI 处理分别使 69、115 和 161 kg N.ha 的氮素用量下的生长季节 NO 排放减少了 88%、88%和 69%。NI 处理减少了产量标准化的 NO 排放;在 69 N+NI 处理中发现最低的产量标准化 NO 量为 0.09 g NO-N kg N 吸收量。此外,在向 69 N、115 N 和 N69、N115 和 N161 施用 NI 后,籽粒产量分别增加了 19%、31%和 18.4%。结果表明,115 N+NI 和 N69 处理分别表现出最高(65%)和最低(29%)的 NUE。最后,我们的研究结果表明,NI 可以减少 NO 排放,同时提高 NUE 和产量,但需要改进硝呋吡咯的施用方法和用量,以最大限度地发挥其缓解潜力。