首页> 外文期刊>Ecotoxicology >The effects of humic substances on copper toxicity to Ceriodaphnia silvestrii Daday (Crustacea, Cladocera).
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The effects of humic substances on copper toxicity to Ceriodaphnia silvestrii Daday (Crustacea, Cladocera).

机译:腐殖质对铜对达氏尾藻的毒性(甲壳纲,克拉多菌)。

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A major question in the field of ecotoxicology is how DOM affects copper accumulation and toxicity in planktonic organisms; copper acute toxicity and bioaccumulation in Ceriodaphnia silvestrii were investigated in the presence and absence of humic substances (HS) under controlled laboratory conditions. Copper was determined as free Cu2+ ions in the media and total copper in the animals; metal ion buffers were used for ion selective electrode calibration, extending the lower detection limit to 10(-11) mol l(-1). Groups of 20 adult females of similar sizes were exposed (24 h) to a range of nominal copper concentrations. Based on total added copper, LC50 was 4.4 x 10(-8) mol l(-1) without HS, whereas with 20 mg l(-1) HS, it was 25 times higher (1.1 x 10(-6) mol l(-1)). Based on free Cu2+ ions LC50 was statistically similar either with (2.8 x 10(-8) mol l(-1)) or without HS (3.3 x 10(-8 )mol l(-1)). The present results showed that natural DOM reduced copper toxicity and that free Cu2+ ions correlates to the bioavailable fraction to zooplankton. Nevertheless, copper bioaccumulation by C. silvestrii was similar either in the presence or absence of humic substances, suggesting that C. silvestrii regulates its body copper content up to 3.0 x 10(-8) mol l(-1) free Cu2+ ions in the media. The organisms were not able to deal with higher free Cu2+ ions concentrations in the media.
机译:生态毒理学领域的一个主要问题是DOM如何影响浮游生物中的铜积累和毒性。在有无腐殖质(HS)的情况下,在受控的实验室条件下,研究了巴西紫檀中铜的急性毒性和生物蓄积性。铜被确定为培养基中的游离Cu2 +离子和动物中的总铜。金属离子缓冲液用于离子选择性电极校准,将检测下限扩展至10(-11)mol l(-1)。由20个大小相似的成年雌性组成的组暴露(24小时)一系列标称铜浓度。基于总添加的铜,不带HS的LC50为4.4 x 10(-8)mol l(-1),而具有20 mg l(-1)HS的LC50高25倍(1.1 x 10(-6)mol l (-1))。基于游离Cu2 +离子,LC50在(2.8 x 10(-8)mol l(-1))或不使用HS(3.3 x 10(-8)mol l(-1))的情况下在统计上相似。目前的结果表明,天然DOM降低了铜的毒性,而游离的Cu2 +离子与浮游动物的生物利用度相关。然而,无论是否存在腐殖质,C。silvestrii对铜的生物累积都相似,这表明C. silvestrii可以调节体内铜含量高达3.0 x 10(-8)mol l(-1)游离Cu2 +离子。媒体。生物体无法处理培养基中较高的自由Cu2 +离子浓度。

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