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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Latitudinal distributions of atmospheric MSA and MSAss-SO_4~(2-) ratios in summer over the high latitude regions of the Southern and Northern Hemispheres
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Latitudinal distributions of atmospheric MSA and MSAss-SO_4~(2-) ratios in summer over the high latitude regions of the Southern and Northern Hemispheres

机译:夏季南半球和北半球高纬度地区大气MSA和MSA / nss-SO_4〜(2-)比的纬度分布

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摘要

To characterize the spatial distributions of methane-sulfonic acid (MSA) as represented by measured aerosol methane sulfonate (MS) and its relationships with non-sea-salt (nss) sulfate (SO_4~(2-)) in the marine atmospheric boundary layer over high-latitude regions, bulk aerosol samples were collected during eight cruises during the Chinese National Antarctic and Arctic Research Expeditions from 1998 to 2008. The concentrations of MSA (an indicator of marine biogenic sulfur production), sulfate, sodium and chloride in samples were analyzed using ion chromatography. Increases in the aerosol MSA concentrations and MSAss-SO_4~(2-) ratios were observed as functions of latitudes in the Pacific Ocean, more abruptly near high southern latitudes as compared to those in high northern latitudes. The MSA concentrations increased from 0.011 μg m~(-3) near the equator to 0.26 μg m~(-3) at 63°S, 23°W and from 0.0013 μg m~(-3) at northern midlatitudes to 0.19 μg m~(-3) at 58°N, 175°E. However, MSA decreased in the latitudes north of 58°N in the Pacific, where air temperature was lower. MSAss-SO_4~(2-) ratios increased from 0.024 near the equator to 0.93 at 62°S, 4°E and from 0.0031 around northern midlatitudes to 0.39 at 68°N, 169°W. The MSA concentrations were more correlated with MSAss-SO_4~(2-) (R~2 = 0.43, n = 60) in Southern Hemisphere than Northern Hemisphere (R~2 = 0.091, n = 40). No significant correlation was found between MSAss-SO_4~(2-) and air temperature at high latitudes, indicating latitudinal temperature variations were not a main factor responsible for the MSAss-SO_4~(2-) variation in those regions. Substantial increases in the concentrations of MSA in coastal Antarctica may indicate additional sources of biogenic S besides the emissions of dimethylsulfide from the sea.
机译:表征以大气气溶胶甲烷磺酸盐(MS)表示的甲烷磺酸(MSA)的空间分布及其与海洋大气边界层中非海盐(nss)硫酸盐(SO_4〜(2-))的关系在高纬度地区,1998年至2008年中国国家南极和北极研究考察队在八次航行中收集了大批气溶胶样品。样品中的MSA(硫酸盐,钠和氯化物)的浓度为使用离子色谱法进行分析。在太平洋中,观测到气溶胶MSA浓度和MSA / nss-SO_4〜(2-)比的增加,这与南高纬度地区相比,在高南纬度地区更突然。 MSA浓度从赤道附近的0.011μgm〜(-3)升高到63°S,23°W时的0.26μgm〜(-3)和北部中纬度的0.0013μgm〜(-3)升高到0.19μgm 〜(-3)在58°N,175°E。但是,在太平洋地区58°N以北的气温较低的地区,MSA下降了。 MSA / nss-SO_4〜(2-)比率从赤道附近的0.024上升到62°S,4°E的0.93,从北中纬度附近的0.0031上升到68°N,169°W的0.39。南半球的MSA浓度与MSA / nss-SO_4〜(2-)(R〜2 = 0.43,n = 60)的相关性高于北半球(R〜2 = 0.091,n = 40)。在高纬度地区,MSA / nss-SO_4〜(2-)与气温之间无显着相关性,表明纬度温度变化不是造成这些地区MSA / nss-SO_4〜(2-)变化的主要因素。南极沿海地区MSA浓度的大幅增加可能表明,除了海洋排放的二甲基硫以外,还有其他生物来源的S。

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