首页> 外文期刊>Environmental Science and Pollution Research >Ecotoxicological impact assessment of the brine discharges from a desalination plant in the marine waters of the Algerian west coast, using a multibiomarker approach in a limpet, Patella rustica
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Ecotoxicological impact assessment of the brine discharges from a desalination plant in the marine waters of the Algerian west coast, using a multibiomarker approach in a limpet, Patella rustica

机译:在阿尔及利亚西海岸的海水水域中,在普利斯,帕特利卡在阿尔及利亚西海岸海洋水域中盐水排放的生态毒理学影响评价。

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The aim of our study is to evaluate the impact of Bousfer desalination plant brine discharges on the Algerian west coast, on a natural population of the marine gastropod mollusc Patella rustica. The effects of a chronic exposure to such discharges are complex to understand due to the combined effects of environmental physico-chemical parameters (e.g., high salinity) and different pollutants that can modulate the physiological responses of this species to stress. In this context, we assessed the biological effects in a marine species P. rustica, by a multibiomarker approach that provided information on the health status of organisms in response to such an environmental stress. We measured biomarkers in the whole soft tissues of limpets as indicators of neurotoxicity (AChE activity), oxidative stress (CAT, SOD, GR, and GPx activities), biotransformation (GST), oxidative damage (LPO through TBARS levels), and genotoxicity (CSP 3-like activity). In parallel, hydrological parameters were measured in the Bay of Oran, at four selected sites: site H considered as a "hotspot," located at Bousfer desalination plant; two other sites E and W, at the east and the west of H respectively; finally, site R "reference" located in Madragh, which is considered as a remote clean site. Our analyses revealed that the activities of antioxidant defense enzymes reached the highest levels in P. rustica collected from site H. The activation of antioxidant defense system in these organisms translated the alteration of their status health, reflecting a level of environmental disruption generated by the desalination plant brine discharges and the high salinity in this area. We also observed that the tissues of limpets collected from site H as well as the two other sites, E and W, had undergone molecular damage, confirmed by the high levels of CSP 3-like activity. This damage resulted from chronic exposure to environmental conditions, potentially genotoxic, due to the desalination plant discharges. The present results indicate the adverse impact of brine effluents from desalination plants on marine fauna and suggest the need for a more consistent approach to environmental management of brine discharges.
机译:我们的研究目的是评估宾果海水淡化植物盐水排放对阿尔及利亚西海岸的影响,海上海洋胃肠杆菌帕特利卡的天然人口。由于环境物理化学参数(例如,高盐度)和不同污染物的组合效应,慢性暴露于这种排放对这种排放的影响是复杂的,以便可以调节该物种的生理反应来应力。在这种情况下,我们通过多联机方法评估了海洋物种P. Rustica中的生物学效应,该方法提供了对响应这种环境压力的有机体健康状况的信息。我们测量了胰酸值炎的整个软组织中的生物标志物,作为神经毒性(ACHE活性),氧化应激(CAT,SOD,GR和GPX活性),生物转化(GST),氧化损伤(LPO通过TBAR水平)和基因毒性( CSP 3样活动)。并行地,在奥兰湾测量水文参数,在四个选定的地点:位点H被认为是位于贝皿脱盐厂的“热点”;另外两个站点E和W,分别在H的东部和西部;最后,位于Madragh的网站R“参考”,被认为是远程清洁场所。我们的分析表明,抗氧化防御酶的活性达到了现场H中的P. Rustica的最高水平。这些生物中抗氧化防御系统的激活转化了其状态健康的改变,反映了海水淡化产生的环境破坏程度植物盐水排放和该区域的高盐度。我们还观察到从位点H收集的跛行组织以及另外两个部位,E和W,经历了分子损伤,通过高水平的CSP 3样活性证实。由于脱盐植物放电,这种伤害引起了慢性暴露于环境条件,可能的遗传毒性。目前的结果表明盐水污水从海水淡化植物对海洋动物区的不利影响,并表明需要一种更加一致的盐水排放环境管理方法。

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