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Effects of olive mill wastewater discharge on benthic biota in Mediterranean streams

机译:橄榄厂废水排放对地中海溪流底栖生物的影响

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Olive mill wastewaters (OMW) discharging in river ecosystems cause significant adverse effects on their water chemistry and biological communities. We here examined the effects of OMW loads in four streams of a Mediterranean basin characterized by changing flow. The diatom and macroinvertebrate community structures were compared between upstream (control) and downstream (impacted) sites receiving OMW discharge. We also tested if effects occurred at the organism level, i.e. the occurrence of deformities in diatom valves, and the sediment toxicity on the midge Chironomus riparius. We evaluated these effects through a two-year analysis, at various levels of chemical pollution and dilution capacity. The impacted sites had high phenol concentrations and organic carbon loads during and after olive mill (OM) operation, and were characterized by higher abundances of pollution-tolerant diatom and macroinvertebrate taxa. Diatom valve deformities occurred more frequently at the impacted sites. The development of C. riparius was affected by phenolic compounds and organic carbon concentrations in the sediments. The similarity in the diatom and macroinvertebrate assemblages between control and impacted sites decreased at lower flows. Diatoms were more sensitive in detecting deterioration in the biological status of OMW receiving waterways than macroinvertebrates. Our results indicate that the negative effects of OMW extended to the whole benthic community, at both assemblage and organism level. (C) 2019 Elsevier Ltd. All rights reserved.
机译:河流生态系统中排放的橄榄油厂废水(OMW)对其水化学和生物群落产生重大不利影响。在这里,我们研究了以流动变化为特征的地中海盆地四股河流中OMW负荷的影响。比较了接受OMW排放的上游(对照)和下游(受影响)部位的硅藻和大型无脊椎动物群落结构。我们还测试了是否在生物体水平上发生了影响,即硅藻瓣膜中的畸变的发生以及对中蚊Chironomus riparius的沉积物毒性。我们通过为期两年的分析,在不同水平的化学污染和稀释能力下评估了这些影响。在橄榄磨(OM)作业期间和之后,受影响的地点的苯酚浓度和有机碳含量较高,其特征是耐污染的硅藻和大型无脊椎动物类群的数量较高。硅藻瓣畸形在受累部位发生得更多。 riparius的发展受到沉积物中酚类化合物和有机碳浓度的影响。在较低流量下,对照位点和受影响位点之间的硅藻和大型无脊椎动物组合的相似性降低。硅藻在检测OMW接收水道的生物状况恶化方面比大型无脊椎动物更敏感。我们的结果表明,OMW的负面影响扩展到整个底栖动物群落,无论是在组装还是在生物水平上。 (C)2019 Elsevier Ltd.保留所有权利。

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