Simultaneous daily measurements of water-soluble organic nitrogen (WSON), ammonium and nitrate were made between July and November 2008 at a rural location in south-east Scotland, using a ‘Cofer’nebulizing sampler for the gas phase and collection on an open-face PTFE membrane for the particle phase. Average concentrations of NH3 were 82 +/- 17 nmol N m-3 (error is s.d. of triplicate samples), whileudoxidised N concentrations in the gas phase (from trapping NO2 and HNO3) were smaller, at 2.6 +/- 1 2.2 nmol N m-3, and gas-phase WSON concentrations were 18 +/- 11 nmol N m-3. The estimated collection efficiency of the nebulizing samplers for the gas phase was 88 (+/-8) % for NH3, 37 (+/-16) % for NO2 and 57 (+/-7) % for WSON; reported average concentrations have not been corrected for samplingudefficiency. Concentrations in the particle phase were smaller, except for nitrate, at 21 +/- 9, 10 +/- 6 andud8 +/- 9 nmol N m-3, respectively. The absence of correlation in either phase between WSON and eitherud(NH3 + NH4+) or NO3- concentrations suggests atmospheric WSON has diverse sources. During wet days, concentrations of gas and particle-phase inorganic N were lower than on dry days, whereas the converse was true for WSON. These data represent the first reports of simultaneous measurements of gas and particle phase water-soluble nitrogen compounds in rural air on a daily basis, and show that WSON occurs in both phases, contributing 20-25% of the total water-soluble nitrogen in air, in good agreementudwith earlier data on the contribution of WSON to total dissolved N in rainfall in the UK.
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机译:在2008年7月至11月之间,在苏格兰东南部的一个农村地区,同时使用“ Cofer”雾化采样器对气相进行了水溶性有机氮(WSON),铵和硝酸盐的日同步测量,并在露天进行了收集。面对PTFE膜的颗粒相。 NH3的平均浓度为82 +/- 17 nmol N m-3(误差是一式三份样品的标准偏差),而气相中过氧化的N浓度(来自捕获NO2和HNO3)则较小,为2.6 +/- 1 2.2 nmol N m-3,气相WSON浓度为18 +/- 11 nmol N m-3。气相的雾化采样器的估计收集效率对于NH3为88(+/- 8)%,对于NO2为37(+/- 16)%,对于WSON为57(+/- 7)%;报告的平均浓度尚未针对采样效率不足进行校正。除硝酸盐外,颗粒相中的浓度较小,分别为21 +/- 9、10 +/- 6和ud8 +/- 9 nmol N m-3。 WSON与ud(NH3 + NH4 +)或NO3-浓度之间的任何一个相位都没有相关性,表明大气WSON的来源多种多样。在潮湿的日子里,气体和颗粒相无机氮的浓度低于干燥的日子,而WSON则相反。这些数据代表了首次每日同时测量农村空气中气相和颗粒相水溶性氮化合物的报告,并表明WSON发生在两个相中,占空气中总水溶性氮的20-25% ,与WSON对英国降雨中溶解氮总量的贡献的早期数据吻合良好。
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