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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >SULFATE, NITRATE, METHANESULFONATE, CHLORIDE, AMMONIUM, AND SODIUM MEASUREMENTS FROM SHIP, ISLAND, AND AIRCRAFT DURING THE ATLANTIC STRATOCUMULUS TRANSITION EXPERIMENT MARINE AEROSOL GAS EXCHANGE
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SULFATE, NITRATE, METHANESULFONATE, CHLORIDE, AMMONIUM, AND SODIUM MEASUREMENTS FROM SHIP, ISLAND, AND AIRCRAFT DURING THE ATLANTIC STRATOCUMULUS TRANSITION EXPERIMENT MARINE AEROSOL GAS EXCHANGE

机译:大西洋气溶胶过渡实验海洋气溶胶气体交换过程中来自船舶,岛屿和飞机的硫酸盐,硝酸盐,甲烷磺酸盐,氯化物,铵和钠的测量值

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摘要

We measured aerosol methanesulfonic acid (MSA), Cl-, NO3-, SO4=, Na+, and NH4+ concentrations and size distributions and gaseous ammonia and nitric acid concentrations from Santa Maria, Azores during the Atlantic Stratocumulus Transition Experiment/Marine Aerosol and Gas Exchange (ASTEX/MAGE) experiment in June 1992. We also sampled some of these species in the free troposphere and marine boundary layer (MBL) from the National Center for Atmospheric Research's (NCAR's) Electra aircraft and at the surface from the R/V Oceanus. In relatively clean Atlantic marine air masses the wean (and standard error of the mean) observed MSA concentrations (27 +/- 2 parts per trillion molar mixing ratio, ppt) were smaller than in continental polluted air masses (36 +/- 6 ppt), reflecting either longer aerosol lifetimes in air with higher cloud condensation nuclei (CCN) concentrations or more active photochemical production in polluted air. Mean NH4+on-sea-salt (nss) SO4+ molar ratios in marine and continental air masses were 0.65 +/- 0.05 and 1.3 +/- 0.2, respectively, indicating that continental sulfate was neutralized by ammonia to a greater extent than marine sulfate was. Most of the NH4+ and nss SO4= was contained in submicrometer modes; Na+, Cl-, and NO3- were in supermicron modes; and MSA showed bimodal behavior, with major and minor peaks at 0.3-0.4 mu m and 1.5 mu m, respectively. The molar ratio NH4+ss SO4= relative to size confirms that most ammonia vapor condensed on submicron nss SO4=. The average dry deposition fluxes for aerosol nss SO4=, MSA, NH4+ and NO3- during ASTEX/MAGE were 1.49, 0.09, 0.18, and 3.25 mu mol m(-2) d(-1), respectively. [References: 39]
机译:我们测量了大西洋地层积云过渡实验/海洋气溶胶和气体交换过程中来自亚速尔群岛圣玛丽亚的气溶胶甲烷磺酸(MSA),Cl-,NO3-,SO4 =,Na +和NH4 +的浓度和尺寸分布以及氨和硝酸的气态浓度(ASTEX / MAGE)实验于1992年6月进行。我们还从美国国家大气研究中心(NCAR)的伊莱克特拉(Electra)飞机的对流层和海洋边界层(MBL)中以及在R / V Oceanus的地面上对其中一些物种进行了采样。在相对清洁的大西洋海洋气团中,观测到的MSA浓度(均值的标准误差)(27 +/- 2份/万亿摩尔混合比,ppt)小于大陆污染的气团(36 +/- 6 ppt) ),或者反映出更高的云凝结核(CCN)浓度在空气中的气溶胶寿命更长,或者在污染的空气中产生更积极的光化学产物。在海洋和大陆气团中,平均NH4 + /非海盐(nss)SO4 +摩尔比分别为0.65 +/- 0.05和1.3 +/- 0.2,表明与海洋硫酸盐相比,硫酸盐被氨气中和的程度更大。是。大部分的NH4 +和nss SO4 =包含在亚微米模式下。 Na +,Cl-和NO3-处于超微米模式; MSA和MSA表现出双峰行为,主要和次要峰分别在0.3-0.4μm和1.5μm处。 NH4 + / nss SO4 =相对于粒径的摩尔比证实,大多数氨蒸气冷凝在亚微米nss SO4 =上。 ASTEX / MAGE期间气溶胶nss SO4 =,MSA,NH4 +和NO3-的平均干沉降通量分别为1.49、0.09、0.18和3.25μmolmol m(-2)d(-1)。 [参考:39]

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