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Efficacy of NaCl brine for treatment of ballast water against freshwater invasions

机译:NaCl盐水处理压舱水对淡水入侵的功效

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摘要

Currently, all transoceanic vessels entering the Great Lakes must perform ballast water exchange or saltwater flushing, procedures designed to reduce the risk of new biological invasions from ballast water. Vessels not in compliance with these regulations presently have limited, often costly, and/or time-consuming alternatives available. Treatment with sodium chloride brine at an initial concentration of 230‰ has been proposed as an emergency ballast water management option and is examined here. Six shipboard trials were conducted under operational conditions to determine the efficacy of brine ballast water treatment. Trials were conducted on three vessels with full ballast tanks and on three vessels with only residual ballast water. Brine distribution in tanks was adequate, noting that vessel movement was essential to ensure mixing into ballast water or ballast residuals. Once mixing has occurred, approximately 25. hour exposure to 45‰ brine or 1 hour exposure to 115‰ brine is required to effectively exterminate freshwater zooplankton. Brine appears to be a cost-effective and relatively safe procedure that could be implemented immediately for emergency treatment of non-compliant ballast water to reduce risk of new invasions in the Great Lakes. © 2011 Elsevier B.V.
机译:当前,所有进入大湖区的越洋船只都必须进行压载水交换或盐水冲洗,这些程序旨在减少压载水引起新的生物入侵的风险。目前不符合这些规定的船只具有有限的,通常是昂贵的和/或耗时的选择。有人建议使用初始浓度为230‰的氯化钠盐水处理作为应急压载水管理方案,并在此处进行了检查。在操作条件下进行了六次船上试验,以确定盐水压载水处理的功效。在装有压载水舱满满的三艘船和仅装有压载水的三艘船上进行了试验。坦克中的盐水分配是足够的,并指出容器的移动对于确保混入压载水或压载残渣是必不可少的。一旦发生混合,就需要大约25小时暴露于45‰盐水或1小时暴露于115‰盐水以有效消灭淡水浮游动物。盐水似乎是一种具有成本效益且相对安全的程序,可以立即实施该程序以对不合格的压载水进行紧急处理,以减少大湖区新入侵的风险。 ©2011 Elsevier B.V.

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