首页> 外文期刊>Biology and fertility of soils: Cooperating Journal of the International Society of Soil Science >Orthophosphate enhances N2O production from aerobic hydroxylamine decomposition: implications to N2O emissions from nitrification in ornithogenic and manure-fertilized soils
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Orthophosphate enhances N2O production from aerobic hydroxylamine decomposition: implications to N2O emissions from nitrification in ornithogenic and manure-fertilized soils

机译:正磷酸盐增强了来自有氧羟胺分解的N2O生产:对织种织物施肥土壤中硝化的N2O排放的影响

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Soils affected by animal wastes have simultaneously high N and P contents. Despite the reports of high nitrous oxide (N2O) emissions in such environments, the role that P plays in N2O dynamics has not yet been systematically investigated. Here, we report the enhancement effect of orthophosphate (PO43--P) abundance on N2O yields from abiotic NH2OH decomposition, which may have substantial implications to N2O emissions from nitrification in such P-rich soils. The axenic cultures of Nitrosomonas europaea, an ammonia-oxidizing bacterium previously reported to leak NH2OH, exhibited significantly higher N2O yields when incubated at higher PO43--P concentrations. As NH4+-to-NO2- turnover and growth rates were unaffected even at the highest PO43--P concentration examined, the abiotic interaction between extracellularly released NH2OH and PO43--P was the most plausible mechanism of enhanced N2O emission in these nitrifier cultures. This proposed mechanism was supported by the results of abiotic NH2OH incubation whereby higher PO43--P concentration resulted in higher N2O yield. Orthophosphate enhancement of NH2OH-to-N2O turnover was then simulated with addition of 5 mu mol NH2OH to an ornithogenic soil with high PO43--P content (23.9 +/- 6.7 g/kg wet soil) and active nitrification activity after sterilization. The N2O yield, 69.0 +/- 4.6%, was significantly higher than the N2O yields for other examined soils with lower PO43--P contents (0-1.94 g/kg wet soil), and the PO43--P contents of the examined soils exhibited strong correlation with the N2O yields. These findings suggest that N2O production from nitrification via abiotic turnover of released NH2OH may be a consequential mechanism of N2O emissions in PO43--P-rich soils.
机译:受动物废物影响的土壤同时高N和P含量。尽管在此类环境中报告了高氧化亚氧化物(N2O)排放,但尚未系统地研究了P参加N2O动态的作用。在这里,我们报告了正磷酸盐(PO43-P)丰度对非生物NH 2 OH分解的N 2 O产率的增强效应,这可能对来自富含富含硝化的土壤中的硝化的N2O排放具有重要意义。在较高PO43 - P浓度下培养时,亚硝基菌核酸的亚硝基氧化菌,先前据报道的氨氧化细菌的氧化胺培养物显着更高。由于NH4 + -TO-NO2-趋势和增长率不受影响,即使在检测到的最高PO43 - P-P浓度,细胞外释放的NH 2 OH和PO43-P之间的非生物相互作用也是这些硝化培养物中增强N2O发射的最合理的机制。通过非生物NH 2 OH孵育的结果支持该提出的机制,其中浓度较高的PO43-P浓度导致更高的N2O产率。然后在用高PO43-P含量(23.9 +/- 6.7g / kg湿土)和灭菌后的活性硝化活性的鸟霉土壤中模拟了正磷酸盐的NH 2 OH-NO 2 O转换的增强。 N2O产率69.0 +/- 4.6%显着高于N2O产量,对具有较低PO43 - P - P含量(0-1.94g / kg湿土)的其他接受的土壤的产量,以及所检查的PO43 - P含量土壤与N2O产量表现出强烈的相关性。这些研究结果表明,通过非生物卷取的释放NH 2 OH的N2O生产可能是PO43 - P-P-P-P-P-P-P-P-PID的N2O排放的后果机制。

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