首页> 外文期刊>International journal of environmental analytical chemistry >TEMPORAL EVOLUTION OF DMS AND DMSP IN ANTARCTIC COASTAL SEA WATER
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TEMPORAL EVOLUTION OF DMS AND DMSP IN ANTARCTIC COASTAL SEA WATER

机译:南极沿海海水中DMS和DMSP的时间演变

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The temporal evolution of concentrations of dimethylsulphide (DMS), its precursor dimethylsulphoniopro-pionate (DMSP) and chlorophyll a is surveyed weekly in the water column and in a landfast ice core at a coastal station of Gerlache Inlet (Terra Nova Bay, Antarctica) from 27 November 2000 to 14 February 2001. The DMS and DMSP profile concentrations in the water column are similar and show a clear temporal trend, with minimum values (< 0.7 nM) at all depths occurring on 27 November 2000 and maximum values (4.8 x 10~2 nM for DMS and 1.8 x 10~2 nM for DMSP) in surface water on 27 December 2000 for DMS and on 19 December 2000 for DMSP. When the sea-ice cover is present, the temporal evolution of DMSP closely follows that of chlorophyll a in the water column, supporting the idea that DMSP, and therefore DMS, has a phytoplanktonic origin. However, when the ice cover breaks up during the late austral summer, a second phytoplankton bloom occurs, while the DMSP concentration in the sea-water column remains very low. In the ice core, the results show higher concentrations of DMSP than those of the underlying sea water, highlighting the important role of sea ice in the sulphur cycle of the Antarctic ecosystem.
机译:每周在水柱和陆生冰芯的Gerlache入口沿岸站(南极洲特拉诺瓦湾)上,对二甲基硫化物(DMS),其前体二甲基磺酸丙二酸酯(DMSP)和叶绿素a浓度的时间变化进行每周调查。 2000年11月27日至2001年2月14日。水柱中DMS和DMSP剖面浓度相似,并显示出明显的时间趋势,2000年11月27日所有深度的最小值(<0.7 nM)出现,最大值(4.8 x 10) DMS在2000年12月27日在地表水中约为DMS的约2 nM,DMSP在1.8 x 10〜2 nM的情况下,DMS在2000年12月19日。当存在海冰盖时,DMSP的时间演变紧随水柱中叶绿素a的演变,支持了DMSP以及因此DMS具有浮游植物起源的观点。但是,当在南半球夏季末冰盖破裂时,就会发生第二次浮游植物开花,而海水柱中的DMSP浓度仍然很低。在冰芯中,结果表明DMSP的浓度高于其底层海水的浓度,突显了海冰在南极生态系统硫循环中的重要作用。

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