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Unusually high soil nitrogen oxide emissions influence air quality in a high-temperature agricultural region

机译:异常高的土壤氮氧化物排放量会影响高温农业区的空气质量

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摘要

Fertilized soils have large potential for production of soil nitrogen oxide (NOx=NO+NO2), however these emissions are difficult to predict in high-temperature environments. Understanding these emissions may improve air quality modelling as NOx contributes to formation of tropospheric ozone (O3), a powerful air pollutant. Here we identify the environmental and management factors that regulate soil NOx emissions in a high-temperature agricultural region of California. We also investigate whether soil NOx emissions are capable of influencing regional air quality. We report some of the highest soil NOx emissions ever observed. Emissions vary nonlinearly with fertilization, temperature and soil moisture. We find that a regional air chemistry model often underestimates soil NOx emissions and NOx at the surface and in the troposphere. Adjusting the model to match NOx observations leads to elevated tropospheric O3. Our results suggest management can greatly reduce soil NOx emissions, thereby improving air quality.
机译:施肥的土壤具有产生土壤氮氧化物(NOx = NO + NO2)的巨大潜力,但是在高温环境下很难预测这些排放量。了解这些排放物可能会改善空气质量建模,因为NOx有助于形成对流层臭氧(O3)(一种强大的空气污染物)。在这里,我们确定了加利福尼亚高温农业地区调节土壤NOx排放的环境和管理因素。我们还调查了土壤NOx排放是否能够影响区域空气质量。我们报告了有史以来最高的土壤NOx排放量。排放量随施肥,温度和土壤湿度的变化而非线性变化。我们发现,区域空气化学模型常常低估了土壤NOx排放以及地表和对流层中的NOx。调整模型以匹配NOx观测值会导致对流层O3升高。我们的结果表明,管理可以大大减少土壤NOx排放,从而改善空气质量。

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