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Effectiveness and potential toxicological impact of the PERACLEAN~? Ocean ballast water treatment technology

机译:PERACLEAN〜?的有效性和潜在的毒理学影响海洋压载水处理技术

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摘要

The efficacy and the potential toxicological impact of a proposed ballast water treatment (PERACLEAN~? Ocean) using peracetic acid (PAA) as active substances to control species introduction was assessed in both fresh- and salt water experiments at very cold water temperatures (1-2 ℃). Levels of PAA gradually declined over the 5-day experiments, while levels of hydrogen peroxide remained relatively stable. The rate of decay of both the PAA and hydrogen peroxide in water was accelerated in the presence of sediments. Water quality properties varied significantly with treatment level with a maximum reduction of pH by 2.0 units and a concomitant 20-fold increase in dissolved organic carbon levels. Living biomass of organisms in treated water was reduced by 99% after 2 days. Results from six toxicological tests revealed very steep dose-response curves of the treatment. The toxic response of treated waters was higher in fresh water than in salt water. The PERACLEAN~? Ocean treatment may represent an effective technology to treat ballast waters under a wide range of temperature and salinity conditions. The discharge of treated fresh water may however pose some toxicological risk to fresh water receiving environments and to cold waters in particular.
机译:在极冷水温下的​​淡水和盐水实验中,均评估了拟议的压舱水处理(PERACLEAN〜Ocean)使用过氧乙酸(PAA)作为活性物质来控制物种引入的功效和潜在的毒理学影响(1- 2℃)。在5天的实验中,PAA的含量逐渐下降,而过氧化氢的含量则保持相对稳定。存在沉淀物时,PAA和过氧化氢在水中的降解速率都加快了。水质特性随处理水平的变化而显着变化,pH值最大降低了2.0个单位,同时溶解的有机碳水平增加了20倍。 2天后,经过处理的水中生物的活生物量减少了99%。六项毒理学测试的结果表明该治疗的剂量反应曲线非常陡峭。在淡水中,经处理的水的毒性反应高于盐水。 PERACLEAN〜?海洋处理可能是在多种温度和盐度条件下处理压载水的有效技术。然而,经处理的淡水的排放可能对淡水接收环境,特别是冷水构成一些毒理学风险。

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