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Hypoxia in the changing marine environment

机译:不断变化的海洋环境中的缺氧

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The predicted future of the global marine environment, as a combined result of forcing due to climate change (e.g.?warming and acidification) and other anthropogenic perturbation (e.g.?eutrophication), presents a challenge to the sustainability of ecosystems from tropics to high latitudes. Among the various associated phenomena of ecosystem deterioration, hypoxia can cause serious problems in coastal areas as well as oxygen minimum zones in the open ocean (Diaz and Rosenberg 2008 Science 321 926–9, Stramma et?al 2008 Science 320 655–8). The negative impacts of hypoxia include changes in populations of marine organisms, such as large-scale mortality and behavioral responses, as well as variations of species distributions, biodiversity, physiological stress, and other sub-lethal effects (e.g.?growth and reproduction). Social and economic activities that are related to services provided by the marine ecosystems, such as tourism and fisheries, can be negatively affected by the aesthetic outcomes as well as perceived or real impacts on seafood quality (STAP 2011 (Washington, DC: Global Environment Facility) p 88). Moreover, low oxygen concentration in marine waters can have considerable feedbacks to other compartments of the Earth system, like the emission of greenhouse gases to the atmosphere, and can affect the global biogeochemical cycles of nutrients and trace elements. It is of critical importance to prediction and adaptation strategies that the key processes of hypoxia in marine environments be precisely determined and understood (cf Zhang et?al 2010 Biogeosciences 7 1–24).
机译:由于气候变化(例如,变暖和酸化)和其他人为扰动(例如,富营养化)所造成的强迫作用,全球海洋环境的预测未来对从热带到高纬度地区的生态系统可持续性提出了挑战。在生态系统恶化的各种相关现象中,缺氧会在沿海地区以及公海中的最低氧气区域引起严重问题(Diaz和Rosenberg 2008 Science 321 926-9,Stramma et al al 2008 Science 320 655-8)。缺氧的负面影响包括海洋生物种群的变化,例如大规模死亡和行为反应,以及物种分布,生物多样性,生理压力和其他亚致死效应(例如生长和繁殖)的变化。与海洋生态系统提供的服务有关的社会和经济活动,例如旅游业和渔业,可能会受到美学结果以及对海鲜质量的感知或实际影响而受到负面影响(STAP 2011(华盛顿特区:全球环境基金)p 88)。此外,海水中低的氧气浓度可能会对地球系统的其他部分产生相当大的反馈,例如向大气中排放温室气体,并可能影响营养物和微量元素的全球生物地球化学循环。准确确定和理解海洋环境中缺氧的关键过程对于预测和适应策略至关重要(参见Zhang等人,2010 Biogeosciences 7 1–24)。

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