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首页> 外文期刊>Journal of applied science & environmental management: JASEM >Lethal Limits and Respiration in the Cichlid Fishes, Tilapia zillii , Sarotherodon galilaeus , S. melanotheron and Oreochromis niloticus Exposed to Effluent from Chemistry Department Laboratories.
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Lethal Limits and Respiration in the Cichlid Fishes, Tilapia zillii , Sarotherodon galilaeus , S. melanotheron and Oreochromis niloticus Exposed to Effluent from Chemistry Department Laboratories.

机译:暴露于化学部实验室流出水中的丽鱼科鱼类,罗非鱼,罗非鱼,加勒罗鱼,黑麦草和尼罗罗非鱼的致死极限和呼吸作用。

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In this study, the lower and upper lethal limits, LC50 and respiration of the freshwater cichlidfishes, Tilapia zillii, Sarotherodon galilaeus, S. melanotheron and Oreochromis niloticus exposed to effluents fromChemistry Department Laboratories were investigated. The mixing of the effluents produced a reduction in pH anddissolved oxygen and a fairly constant temperature and salinity of the media, while the toxicity of the effluentsincreased. The LC50 values after 24 and 48-h exposure in the effluent media were 0.24% and 0.21% for T. zillii;0.26% and 0.24% for O. niloticus; 0.25% and 0.23% for S. galilaeus; 0.27% and 0.26% for S. melanotheron,respectively. The effect of chemical effluent on the rate of respiration of the treated cichlids produced lower rates ofoxygen consumption in the order of S. galilaeus>O. niloticus>S. melanotheron>T. zilili in the highest concentrationof the effluent. The results obtained from this study have shown that the effluents from Chemistry DepartmentLaboratories are not treated as they produced respiratory impairment and physiological dysfunction in the exposedfish. It is suggested that proper treatment of these effluents be carried out before being discharged into thesurrounding stream.
机译:在这项研究中,研究了暴露于化学部实验室废水中的淡水丽鱼,罗非鱼,Sar鱼,Sarotherodon galilaeus,S。melanotheron和Oreochromis niloticus的上下致死限,LC50和呼吸作用。流出物的混合导致pH值和溶解氧的降低以及介质的温度和盐度相当恒定,而流出物的毒性增加。污水培养基中暴露24和48小时后的LC50值,对于Z. zillii为0.24%和0.21%;对尼罗罗非鱼为0.26%和0.24%;半乳链球菌为0.25%和0.23%; S. melanotheron分别为0.27%和0.26%。化学流出物对处理过的丽鱼科植物呼吸速率的影响产生了较低的耗氧率,顺序为S.galilaeus> O。 niloticus> S。黑色素瘤> T。紫丽丽废水的浓度最高。从这项研究中获得的结果表明,化学系实验室的废水未得到处理,因为它们在裸露的鱼类中造成呼吸系统损害和生理功能障碍。建议对这些废水进行适当的处​​理,然后再排放到周围水流中。

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