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比较附生生物膜和滤食性双壳贝类的金属生物累积(镉和锌)以监测工业修复后水系的恢复:一年的生物监测。

Comparison of periphytic biofilm and filter-feeding bivalve metal bioaccumulation (Cd and Zn) to monitor hydrosystem restoration after industrial remediation: a year of biomonitoring.

作者信息

Arini Adeline, Baudrimont Magalie, Feurtet-Mazel Agnès, Coynel Alexandra, Blanc Gérard, Coste Michel, Delmas François

机构信息

Université Bordeaux 1, UMR CNRS 5805 EPOC, Place du Docteur Peyneau, 33120, Arcachon, France.

出版信息

J Environ Monit. 2011 Dec;13(12):3386-98. doi: 10.1039/c1em10581g. Epub 2011 Oct 26.

Abstract

Despite a significant decrease in the metallic waste emissions from an industrial site and a remediation process initiated in 2007, the Riou-Mort watershed (southwest France) still exhibits high Cd and Zn concentrations. Metal wastes have long been proven to significantly disturb aquatic communities. In this study, bioaccumulation capacities and responses to the chemical improvement of the hydrosystem were assessed for a year along the contamination gradient through the comparison of two biological models: Corbicula fluminea and periphytic biofilms, both considered as good bioindicators. Bioaccumulation results confirmed the persistence of water contamination in Corbicula fluminea and biofilms with, respectively, maximum Cd concentrations reaching 80.6 and 861.2 μg gDW(-1), and Zn concentrations 2.0 and 21.3 mg gDW(-1). Biofilms exhibited bioaccumulation in close correlation with water contamination, while Corbicula fluminea presented Cd bioaccumulation clearly regulated by water temperature and metal concentrations, affecting the ventilatory activity, as revealed by condition indices measurements. Also, a linear regression using Cd bioaccumulation and temperature () showed that below approximately 6 °C Corbicula fluminea did not appear to accumulate metals. Bioconcentration factors (BCFs) were higher in biofilms in comparison with Corbicula fluminea and showed the great accumulation capacity of suspended particulate matter in biofilms. However, bioaccumulation capacities are known to be influenced by many factors other than metal concentrations, such as temperature, water oxygenation or plankton and nutrient concentrations. Thus, this study demonstrates the power of a combined assessment using both Corbicula fluminea and biofilms as bioindicators to give a more integrated view of water quality assessment. Finally, when comparing our results with previous studies, the start of hydrosystem restoration could be shown by decreasing bioaccumulation in organisms.

摘要

尽管某工业场地的金属废物排放量显著减少,且于2007年启动了修复进程,但里奥 - 莫尔特流域(法国西南部)的镉和锌浓度仍居高不下。长期以来,金属废物已被证实会严重扰乱水生生物群落。在本研究中,通过比较两种生物模型:河蚬(Corbicula fluminea)和周丛生物膜,二者均被视为良好的生物指示物,沿着污染梯度对生物累积能力以及水生态系统化学改善的响应进行了为期一年的评估。生物累积结果证实,河蚬和生物膜中的水污染依然存在,镉的最高浓度分别达到80.6和861.2微克/克干重(μg gDW(-1)),锌浓度分别为2.0和21.3毫克/克干重(mg gDW(-1))。生物膜的生物累积与水污染密切相关,而河蚬的镉生物累积明显受水温及金属浓度调控,如状况指数测量所示,这影响了其呼吸活动。此外,利用镉生物累积量和温度进行的线性回归表明,在约6℃以下,河蚬似乎不会累积金属。与河蚬相比,生物膜中的生物浓缩系数(BCFs)更高,表明生物膜中悬浮颗粒物的累积能力很强。然而,已知生物累积能力受多种因素影响,而非仅金属浓度,如温度、水的氧合作用或浮游生物及营养物浓度。因此,本研究证明了将河蚬和生物膜作为生物指示物进行综合评估的作用,能更全面地了解水质评估情况。最后,将我们的结果与先前研究进行比较时,可通过生物体中生物累积量的减少来表明水生态系统恢复的开始。

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