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A process-based model for ammonia emission from urine patches, GAG (Generation of Ammonia from Grazing): description and sensitivity analysis

机译:基于过程的尿片氨气排放模型,GAG(放牧产生的氨气):描述和敏感性分析

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pstrongAbstract./strong In this paper a new process-based, weather-driven model for ammonia (NHsub3/sub) emission from a urine patch has been developed and its sensitivity to various factors assessed. The GAG model (Generation of Ammonia from Grazing) is capable of simulating the TAN (total ammoniacal nitrogen) and the water content of the soil under a urine patch and also soil pH dynamics. The model tests suggest that ammonia volatilization from a urine patch can be affected by the possible restart of urea hydrolysis after a rain event as well as COsub2/sub emission from the soil. The vital role of temperature in NHsub3/sub exchange is supported by our model results; however, the GAG model provides only a modest overall temperature dependence in total NHsub3/sub emission compared with the literature. This, according to our findings, can be explained by the higher sensitivity to temperature close to urine application than in the later stages and may depend on interactions with other nitrogen cycling processes. In addition, we found that wind speed and relative humidity are also significant influencing factors. Considering that all the input parameters can be obtained for larger scales, GAG is potentially suitable for field and regional scale application, serving as a tool for further investigation of the effects of climate change on ammonia emissions and deposition./p.
机译:> >摘要。本文开发了一种基于过程的,天气驱动的尿片中氨(NH 3 )排放模型,并且该模型对尿液的敏感性评估各种因素。 GAG模型(放牧产生氨)能够模拟尿片下土壤的TAN(总氨氮)和水含量,以及土壤pH动态。模型测试表明,降雨后尿素水解可能重新开始以及土壤中CO 2 的释放可能会影响尿片中氨的挥发。温度在NH 3 交换中的重要作用得到了我们的模型结果的支持。然而,与文献相比,GAG模型在总NH 3 排放中仅提供了适度的总体温度依赖性。根据我们的发现,这可以用接近后期对尿液接近的温度更高的敏感性来解释,这可能取决于与其他氮循环过程的相互作用。此外,我们发现风速和相对湿度也是重要的影响因素。考虑到所有输入参数都可以在较大规模上获得,GAG可能适合于野外和区域规模应用,可作为进一步研究气候变化对氨气排放和沉积影响的工具。

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