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南大洋和热带西太平洋大气中黑碳气溶胶的分布及影响因素
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作者 苏辰昀 乐凡阁 +1 位作者 康辉 余夏薇 《中国科学技术大学学报》 CAS CSCD 北大核心 2020年第7期912-919,共8页
黑碳气溶胶(BC)具有直接和间接的气候效应,能够长距离传输,了解BC在全球大气中的浓度和分布对认识气候变化具有重要的意义.在中国第三十四次南极科学考察期间(2017年11月至2018年4月),利用多角度吸收光度计(MAAP)在线监测方法对航线上空... 黑碳气溶胶(BC)具有直接和间接的气候效应,能够长距离传输,了解BC在全球大气中的浓度和分布对认识气候变化具有重要的意义.在中国第三十四次南极科学考察期间(2017年11月至2018年4月),利用多角度吸收光度计(MAAP)在线监测方法对航线上空的BC浓度进行了观测,结合氮氧化物(NOx)气体浓度,探讨了BC浓度的分布特征及其影响因素.排除船基影响,南大洋海域中山站至法国站海区、罗斯海海区以及热带西太平洋海域海洋大气BC浓度分别为7.86 ng/m3±15.52 ng/m3、4.73 ng/m3±11.52 ng/m3和17.80 ng/m3±32.71 ng/m3;来源分析表明,罗斯海海区上空BC浓度反映了南极大陆的自然背景,热带西太平洋上空相对较高的BC浓度与陆地来源影响有关,估算的BC干沉降通量远远高于模型模拟的结果. 展开更多
关键词 黑碳气溶胶(BC) 多角度吸收光度计(MAAP) 南大洋 热带西太平洋
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Features and influencing mechanisms of gaseous elemental mercury over the equatorial Pacific and their differences with the Southern Ocean
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作者 WANG Jiancheng yue fange +2 位作者 ZHAN Haicong KANG Hui XIE Zhouqing 《Advances in Polar Science》 CSCD 2022年第1期86-101,共16页
Due to the harmful impacts on the ecosystem and even human health,mercury(Hg)compounds in the environment deserve serious concern.Atmospheric mobilization and exchange at the air-sea interface are important processes ... Due to the harmful impacts on the ecosystem and even human health,mercury(Hg)compounds in the environment deserve serious concern.Atmospheric mobilization and exchange at the air-sea interface are important processes in biogeochemical cycling of Hg.Relying on the 30th(2013/2014),31st(2014/2015),and 33rd(2016/2017)Chinese National Antarctic Research Expedition aboard R/V Xuelong,we found significant rising gaseous elemental mercury(GEM)concentrations over the equatorial Central Indo-Pacific region.Excluding the contribution of anthropogenic,volcanic and biomass burning emissions,the enhanced GEM in marine boundary layer was likely due to the combined actions of two driving factors drove by the Inter-Tropical Conversion Zone(ITCZ):(1)intense wet deposition of Hg,followed by subsequent rapid photoreduction and vast evasion from the surface sea;and(2)the regional low-level convergence of airflow that caused the mass accumulation of GEM in air.In addition,apparently higher GEM concentration level in the equatorial Central Indo-Pacific than in the Southern Ocean was observed in one cruise.Further investigation suggests that apart from the ITCZ corresponded mechanisms,the effects of spatial differences in anthropogenic emissions and more significant GEM oxidation in Antarctic sea should play roles in this phenomenon. 展开更多
关键词 MERCURY equatorial seas Southern Ocean RAINFALL air-sea exchange low-level convergence
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