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Simulation of an artificial upwelling using immersed in situ phytoplankton microcosms

机译:使用浸入式原位浮游植物缩影模拟人工上升流

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The inflow of deep seawater in the surface layer by an Ocean Thermal Energy Conversion (OTEC) plant will generate artificial upwelling. In order to study the potential impact on biogeochemical processes that could result, in situ microcosms were designed to simulate seawater plant discharge and these were deployed off the Caribbean coast of Martinique. Seawater was collected in ultra-clean conditions at maximum chlorophyll a concentrations (45 m depth). The water was then mixed with either 2% or 10% deep seawater (1100 m depth) and put in 2.3 L polycarbonate bottles. These microcosms were immersed for 6 days at 45 m depth on a 220 m mooring. Samples from the surrounding environment and from the microcosms were analyzed by pigment quantification, counting of picophytoplankton groups and macronutrient analyses. Similar trends in the evolutions of the phytoplankton populations were observed over time between the control microcosms (without addition of deep seawater) and the surrounding environment, suggesting that these microcosms can be used as a realistic representation of the natural surrounding waters over a 6-day incubation period. Microcosm enrichment with 10% deep seawater induced a shift in the phytoplankton assemblage towards the development of diatoms, haptophytes, and Prochlorococcus, whereas 2% enrichment only led to an increase in the Prochlorococcus population. (C) 2015 Elsevier B.V. All rights reserved.
机译:海洋热能转化(OTEC)植物在表层的深海水流入将产生人为上升流。为了研究可能对生物地球化学过程产生的潜在影响,设计了原位缩影来模拟海水植物的排放,并将其部署在马提尼克岛加勒比海沿岸。在超净条件下以最大叶绿素a浓度(45 m深度)收集海水。然后将水与2%或10%的深海水(深度1100 m)混合,并放入2.3 L聚碳酸酯瓶中。这些缩影在220 m的系泊上以45 m的深度浸入6天。来自周围环境和微观世界的样品通过色素定量,浮游浮游生物种群计数和大量营养物分析进行了分析。在控制的微观世界(不添加深海水)和周围环境之间,随着时间的推移,观察到了浮游植物种群演变的相似趋势,这表明这些微观世界可以用作6天之内自然周围水域的真实代表。潜伏期。含10%深海水的缩微富集引起浮游植物组合向硅藻,附生植物和原球藻的发展转移,而2%富集仅导致原球藻种群的增加。 (C)2015 Elsevier B.V.保留所有权利。

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