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A Gas-Controlled Aquarium System for Ocean Acidification Studies

机译:一种用于海洋酸化研究的气体控制水族馆系统

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Ocean carbon sequestration by direct carbon dioxide injection to the deep-sea or by the fertilization of the upper ocean with iron to accelerate the biological pump are methods under consideration to mitigate rapidly rising atmospheric carbon dioxide levels and avoid, in part, excessive greenhouse gas warming. Both sequestration efforts will elevate carbon dioxide levels in the deep ocean, which after reaction with the seawater carbonate system, will decrease the pH of the ocean. In addition, ocean acidification is occurring through the passive influx of carbon dioxide through the ocean surface. Efforts to understand the effects of accelerating ocean acidification from carbon sequestration efforts or passive CO{sub}2 absorbance will require study of marine ecosystems from the surface to the deep-sea. In many deep-sea environments, hypoxia can also be stressful for marine organisms. Therefore, studies to assess the impacts of ocean acidification in deep-sea habitats should also include examination of the effects of hypoxia, due to the potentially synergistic interaction between these stressors [1,2]. In this report, we describe the development of a gas-controlled aquarium (GCA) system used for laboratory studies of the effects of hypoxia or ocean acidification or both on marine animals. The GCA system is capable of regulating the temperature, oxygen, and carbon dioxide content of waters in three aquarium tanks for use in assays of growth and metabolic rate studies or various marine animals. The GCA design uses a main reservoir and 3 aquarium tanks in which different set-points for oxygen and carbon dioxide levels are possible. Membrane contactors connected to recirculation pumps and gas sources are used to control gas concentrations in each tank. A LabVIEW software system integrated with mass flow controllers for oxygen, carbon dioxide, and nitrogen sources allows real-time, automated regulation of gas concentrations in each tank.
机译:海洋碳封存通过直接二氧化碳注射到深海或通过铁的施肥用铁加速生物泵是正在考虑的方法,以减轻大气二氧化碳水平的快速上升,部分,部分,过度温室气体变暖。综合综合努力将升高深海二氧化碳水平,在与海水碳酸盐体系反应后,将降低海洋的pH。此外,海洋酸化是通过海洋表面通过二氧化碳的被动流入的。努力了解从碳封存努力或被动CO {亚} 2吸收的努力加速海洋酸化或被动CO {}吸光度将需要从表面到深海的海洋生态系统研究。在许多深海环境中,缺氧也可能对海洋生物有压力。因此,评估海洋酸化在深海栖息地的影响的研究还应包括检查缺氧的影响,因为这些压力源之间的可能协同相互作用[1,2]。在本报告中,我们描述了用于对缺氧或海洋酸化的影响或海洋动物的影响的天然气控制水族馆(GCA)系统的发展。 GCA系统能够在三个水族箱中调节水的温度,氧气和二氧化碳含量,用于用于生长和代谢率研究或各种海洋动物的测定。 GCA设计采用主储层和3个水族箱,其中不同的设定点用于氧气和二氧化碳水平。连接到再循环泵和气体源的膜接触器用于控制每个罐中的气体浓度。 LabVIEW软件系统与质量流量控制器集成,用于氧气,二氧化碳和氮源,允许实时,自动调节每个罐中的气体浓度。

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