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首页> 外文期刊>Water Research >THE RELATIVE ACUTE TOXICITY OF CONTINUOUS AND INTERMITTENT EXPOSURES OF CHLORINE AND BROMINE TO AQUATIC ORGANISMS IN THE PRESENCE AND ABSENCE OF AMMONIA
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THE RELATIVE ACUTE TOXICITY OF CONTINUOUS AND INTERMITTENT EXPOSURES OF CHLORINE AND BROMINE TO AQUATIC ORGANISMS IN THE PRESENCE AND ABSENCE OF AMMONIA

机译:氨气存在和缺失时连续和间歇性暴露于氯和溴对水生生物的相对急性毒性

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Sodium bromide can be used to convert hypochlorous acid into hypobromous acid. An alternative strategy to biofouling control uses the simultaneous addition of sodium bromide and chlor- ine to water used for power plant condenser cooling. This approach can significantly reduce the total disinfectant and halogen application rates because the bromine oxidants that are generated are more effective for controlling biofouling than their chlorine counterparts, especially at higher pHs. Since such a change in biofouling control strategy could adversely impact the environment, the acute toxicity of bromine oxidants were evaluated in both continuous and intermittent exposure scenarios. Decay prop- erties of bromine oxidants were compared to those of chlorine oxidants. In addition, two tests were conducted to investigate the relative toxicities of chloramines and bromamines. For the six species tested, bromine oxidants were two to five times more toxic than chlorine oxidants. For continuous ex- posure to bromine oxidants, LC50 values for daphnids (Dapnia magna) and amphipods (Hyalelia azieca) could not be calculated because significant mortality occurred at the oxidant quantitation limit. Both chlorine and bromine proved to be more toxic to daphnids and mysids (Mysidopsis bahia) in the pre- sence of ammonia. While the toxicity data show that bromine oxidants are more toxic than chlorine oxidants, bromine oxidants decayed two to five times faster than chlorine oxidants in freshwater and saltwater, respectively. With regard to potential environmental impact, it is important that one con
机译:溴化钠可用于将次氯酸转化为次溴酸。生物污染控制的另一种策略是在电厂冷凝器冷却用水中同时添加溴化钠和氯。这种方法可以显着降低消毒剂和卤素的总施用率,因为所生成的溴氧化剂比氯氧化剂更有效地控制生物污垢,尤其是在较高的pH值下。由于生物污垢控制策略的这种变化可能会对环境造成不利影响,因此在连续和间歇暴露情况下均评估了溴氧化剂的急性毒性。比较了溴氧化剂和氯氧化剂的衰变特性。另外,进行了两项测试以研究氯胺和溴胺的相对毒性。对于所测试的六个物种,溴氧化剂的毒性是氯氧化剂的二至五倍。对于连续暴露于溴氧化剂的情况,无法计算出水蚤(Dapnia magna)和两栖动物(Hyalelia azieca)的LC50值,因为在氧化剂定量极限时发生了显着的死亡率。在存在氨的情况下,氯和溴都对da和my类(Mysidopsis bahia)更具毒性。尽管毒性数据表明溴氧化剂的毒性比氯氧化剂的毒性更大,但在淡水和盐水中,溴氧化剂的降解速度分别比氯氧化剂快两到五倍。关于潜在的环境影响,重要的是

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