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首页> 外文期刊>Annali di Chimica: Journal of Analytical and Environmental Chemistry >Winter Evolution of DMS and DMSP in Venice Lagoon Water and Sediment
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Winter Evolution of DMS and DMSP in Venice Lagoon Water and Sediment

机译:威尼斯泻湖水和沉积物中DMS和DMSP的冬季演变

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摘要

The evolution of dimethylsulphide (DMS) and dimethylsulphoniopropionate (DMSP) concentrations in the water and sediment of the Venice lagoon were studied together with the concentration of chlorophyll a, temperature and the composition and density of phytoplankton to understand the role of the sediment as a source of DMS during the winter period. The temporal trend of water DMS concentration in this period showed a maximum concentration in February (75.7 nmol S l~(-1)) related to low DMSP and chlorophyll a concentrations but to high phytoplanktonic abundance. The DMS and DMSP concentrations were greater in the sediment than in the water. The temporal trend of DMS concentration in sediment showed a maximum in February (1155 nmol S l~(-1)) related to the maximum of DMS concentration in surface water. These observations suggested that in the winter period DMS could be produced by the conversion of the DMSP present in the bulk water but principally by that present in the sediment (microbiological degradation of DMSP or other sulphur-containing compounds) that subsequently diffuse in water.
机译:研究了威尼斯泻湖的水和沉积物中二甲基硫(DMS)和二甲基磺丙酸二甲酯(DMSP)浓度的演变,以及叶绿素a的浓度,温度以及浮游植物的组成和密度,以了解沉积物作为来源的作用冬季的DMS。该时期水DMS浓度的时间趋势显示2月份的最高浓度(75.7 nmol S l〜(-1))与低DMSP和叶绿素a的浓度有关,但与浮游植物的丰度高有关。沉积物中的DMS和DMSP浓度高于水中。沉积物中DMS浓度的时间趋势在2月出现最大值(1155 nmol S l〜(-1)),与地表水中DMS浓度的最大值有关。这些观察结果表明,在冬季,可以通过大量水中存在的DMSP的转化来产生DMS,但主要是通过随后在水中扩散的沉积物中存在的DMSP的转化(DMSP或其他含硫化合物的微生物降解)来生产。

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