...
首页> 外文期刊>ACS Omega >Causes of Large Increases in Atmospheric Ammonia in the Last Decade across North America
【24h】

Causes of Large Increases in Atmospheric Ammonia in the Last Decade across North America

机译:北美近十年来大气氨气大量增加的原因

获取原文

摘要

Decadal trends of atmospheric ammonia (NH3) and their potential causes were explored through the analysis of monitored data collected at 15 sites in the United States and 7 sites in Canada. Large percentage increases in the annual average concentration of atmospheric NH3, for example, >100% at 6 sites and 40–100% at 10 sites, were observed over the most recent 8–13 year period. In contrast, a decrease or a narrow variation in NH3 emissions was reported at the state or provincial level in both countries during the same period. Decreased emissions of SO2 and NOx across North America in the past decade would have reduced the chemical loss of atmospheric NH3 to form particulate NH4+. Such a chemical mechanism was verified through regression analysis at about half of the monitored sites, where the increasing trends in atmospheric NH3 were partially explained by the reduced NH4+. Excluding the reduced contribution from this chemical loss to generate the adjusted annual NH3 concentration through two approaches, no decreasing trends can be obtained to align those in emissions at most sites, implying that other factors also contributed to the increase in the annual NH3 concentration. Correlation analysis results implied that enhanced drought conditions and increased ambient temperatures also likely contributed to the increasing trend in the annual NH3 concentration at some sites. The large percentage increases in the annual NH3 concentration cannot be fully explained by all the identified causes, leading to oppugning the reality of the decrease in NH3 emissions reported across North America in the recent decade.
机译:通过对在美国15个站点和加拿大7个站点收集的监测数据进行分析,探索了大气氨(NH3)的十年变化趋势及其潜在原因。在最近的8-13年间,观察到大气中NH3的年平均浓度大幅增加,例如在6个站点> 100%,在10个站点40-100%。相反,在同一时期,两国的州或省级国家都报告了NH3排放量减少或窄幅变化。在过去十年中,北美地区SO2和NOx排放量的减少将减少大气中NH3形成颗粒状NH4 +的化学损失。通过对约一半受监测站点进行回归分析,验证了这种化学机制,其中大气NH3的增加趋势部分是由NH4 +减少引起的。除了通过两种方法减少化学损失来产生调整后的年度NH3浓度的贡献外,在大多数站点上都无法获得降低排放趋势的趋势,这意味着其他因素也导致了年度NH3浓度的增加。相关分析结果表明,干旱条件的增强和环境温度的升高也可能导致某些地点的年度NH3浓度增加的趋势。不能确定所有原因,也无法完全解释年度NH3浓度大幅度增加的事实,这导致人们对近十年来报告的整个北美NH3排放量减少的现实提出了质疑。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号