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Modelling the combined impacts of climate change and direct anthropogenic drivers on the ecosystem of the northwest European continental shelf

机译:模拟气候变化和直接的人为驱动因素对西北欧洲大陆架生态系统的综合影响

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摘要

The potential response of the marine ecosystem of the northwest European continental shelf to climate changeudunder a medium emissions scenario (SRES A1B) is investigated using the coupled hydrodynamics-ecosystemudmodel POLCOMS-ERSEM. Changes in the near future (2030–2040) and the far future (2082–2099) are compared to the recent past (1983–2000). The sensitivity of the ecosystem to potential changes in multiple anthropogenic drivers (river nutrient loads and benthic trawling) in the near future is compared to the impact of changes in climate. With the exception of the biomass of benthic organisms, the influence of the anthropogenic drivers only exceeds the impact of climate change in coastal regions. Increasing river nitrogen loads has a limited impact on the ecosystem whilst reducing river nitrogen and phosphate concentrations affects net primary production(netPP) and phytoplankton and zooplankton biomass. Direct anthropogenic forcing is seen to mitigate/amplify the effects of climate change. Increasing river nitrogen has the potential to amplify the effects of climate change at the coast by increasing netPP. Reducing river nitrogen and phosphate mitigates the effects of climate change for netPP and the biomass of small phytoplankton and large zooplankton species but amplifies changes in the biomass of large phytoplankton and small zooplankton.
机译:使用耦合水动力-生态系统 udmodel POLCOMS-ERSEM,研究了中度排放情景下(SRES A1B)西北欧大陆架海洋生态系统对气候变化的潜在响应。将近期(2030–2040)和远期(2082–2099)的变化与近期(1983–2000)的变化进行比较。将生态系统对近期内多种人为驱动因素(河流营养负荷和底栖拖网捕捞)潜在变化的敏感性与气候变化的影响进行了比较。除底栖生物的生物量外,人为驱动因素的影响仅超过沿海地区气候变化的影响。河流氮负荷的增加对生态系统的影响有限,而减少河流氮和磷酸盐的浓度会影响净初级生产(netPP)以及浮游植物和浮游生物的生物量。直接人为强迫被认为减轻/放大了气候变化的影响。氮含量的增加有可能通过增加netPP来增加沿海气候变化的影响。减少河流中的氮和磷可减轻气候变化对netPP和小型浮游植物和大型浮游动物物种生物量的影响,但会放大大型浮游植物和小型浮游动物生物量的变化。

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