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Ammonia emission time profiles based on manure transport data improve ammonia modelling across north western Europe

机译:基于粪便运输数据的氨气排放时间曲线改善了整个西北欧的氨气建模

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Accurate modelling of mitigation measures for nitrogen deposition and secondary inorganic aerosol (SIA) episodes requires a detailed representation of emission patterns from agriculture. In this study the meteorological influence on the temporal variability of ammonia emissions from livestock housing and application of manure and fertilizer are included in the chemistry transport model LOTOS-EUROS. For manure application, manure transport data from Flanders (Belgium) were used as a proxy to derive the emission variability. Using improved ammonia emission variability strongly improves model performance for ammonia, mainly by a better representation of the spring maximum. The impact on model performance for SIA was negligible as explained by the limited, ammonia rich region in which the emission variability was updated. The contribution of Flemish agriculture to modelled annual mean ammonia and SIA concentrations in Flanders were quantified at respectively 7-8 and 1-2 mu g/m(3). A scenario study was performed to investigate the effects of reducing ammonia emissions from manure application during PM episodes by 75%, yielding a maximum reduction in modelled SIA levels of 1-3 mu g/m(3) during episodes. Year-to-year emission variability and a soil module to explicitly model the emission process from manure and fertilizer application are needed to further improve the modelling of the ammonia budget. (C) 2016 Elsevier Ltd. All rights reserved.
机译:要对氮沉降和二次无机气溶胶(SIA)发作的缓解措施进行准确建模,就需要对农业排放模式进行详细描述。在这项研究中,气象对牲畜舍氨气排放的时间变化以及肥料和肥料的使用的影响包括在化学运输模型LOTOS-EUROS中。对于粪肥的施用,来自法兰德斯(比利时)的粪便运输数据被用作代理来推导排放的可变性。主要通过更好地表示弹簧最大值,使用改进的氨气排放可变性可大大改善氨气的模型性能。 SIA对模型性能的影响可以忽略不计,这是由于有限的富氨区域(其中排放变异性已更新)所解释。法兰德斯农业对法兰德斯地区年平均氨氮和SIA浓度的贡献分别为7-8和1-2μg / m(3)。进行了一项情景研究,以研究将PM发作期间粪肥施用中的氨排放量减少75%,从而使发作期间建模的SIA水平最大降低1-3μg / m(3)。为了进一步改善氨氮预算的建模,需要逐年的排放可变性和一个土壤模块来明确模拟肥料和肥料的排放过程。 (C)2016 Elsevier Ltd.保留所有权利。

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