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首页> 外文期刊>North American Journal of Aquaculture >A Simple Apparatus for Maintaining Gas-Supersaturated Seawater in the Laboratory for Experimental Purposes
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A Simple Apparatus for Maintaining Gas-Supersaturated Seawater in the Laboratory for Experimental Purposes

机译:用于实验室目的的用于保持气体过饱和海水的简单设备

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摘要

Gas bubble disease caused by supersaturated conditions is generally well understood for commercially important freshwater species, such as salmon and trout, but very little is known about impacts to marine finfish culture. We developed a relatively simple, low-cost apparatus to expose juvenile white seabass Atractoscion nobilis and striped bass Morone saxatilis to multiple gas saturation levels simultaneously. We found that the system was capable of operating under different temperatures and accommodating a range of juvenile fish sizes. Gas saturation treatments were maintained by mixing a supersaturated seawater source with a saturated one. The supersaturated seawater source was created by reducing pressure of an air- or oxygen- equilibrated water source maintained at a pressure of 623.2 mm Hg. The saturated seawater source was achieved by degassing seawater using a packed column. By mixing these two water sources manually by use of needle valves, differential gas pressures ( Delta P) ranging from 0.0 to 167.2 mm Hg were maintained. The control treatment level ranged from -35.7 to 0 mm Hg and was maintained using a vacuum degasser. Oxygen-nitrogen (O sub(2):N sub(2)) ratios ranged from 0.83 to 1.41. Temperature within the experiment was computer controlled. The supersaturation apparatus operated very effectively and delivered treatment levels that were stable and significantly different from one another throughout all trials.
机译:对于商业上重要的淡水物种(例如鲑鱼和鳟鱼),人们普遍了解过饱和条件引起的气泡病,但对海洋鱼类养殖的影响知之甚少。我们开发了一种相对简单,低成本的仪器,可将幼小的白鲈鱼白术和带条纹的鲈鱼Morone saxatilis同时暴露于多种气体饱和度水平。我们发现该系统能够在不同的温度下运行并适应各种大小的幼鱼。通过将过饱和的海水源与饱和的海水源混合来保持气体饱和处理。通过降低保持在623.2毫米汞柱的压力的空气或氧气平衡的水源的压力来创建过饱和海水源。饱和海水源是通过使用填充塔对海水进行脱气而获得的。通过使用针阀手动混合这两种水源,可保持0.0至167.2 mm Hg的气压差(Delta P)。对照处理水平为-35.7至0 mm Hg,并使用真空脱气机保持。氧氮(O sub(2):N sub(2))比率范围从0.83到1.41。实验中的温度由计算机控制。在所有试验中,过饱和设备均能非常有效地运行并提供稳定的治疗水平,并且彼此之间存在显着差异。

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