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镉在淡水食物链实验模型中的积累。

Accumulation of cadmium in a freshwater food chain experimental model.

作者信息

Ferard J F, Jouany J M, Truhaut R, Vasseur P

出版信息

Ecotoxicol Environ Saf. 1983 Feb;7(1):43-52. doi: 10.1016/0147-6513(83)90047-7.

Abstract

The study of food chain contamination in nature or in the laboratory requires precise definitions of some terms. A simplified model of a freshwater food chain has been elaborated to try to point out hazards related to the presence of cadmium in the aquatic environment. Three different species belonging to various trophic levels, but to the same aquatic systems were used. The required biological and analytical criteria are described. The time course of the experiment was 34 days starting with a 10-day contamination of the first trophic level (algae). The algae were then separated, washed with fresh medium, and given to the second trophic level (daphnids) to eat for 20 days. The third trophic level (fish) was then introduced for 4 days as a scavenger. The methodology was designed to determine the accumulation of cadmium by daphnids and then fish from the algal source. The results show a high direct bioaccumulation of cadmium in algae. The indirect bioaccumulation of daphnids was of the same order of magnitude, but for fish it was smaller. Nevertheless the cadmium transfer from daphnids to fish was obvious.

摘要

对自然界或实验室中的食物链污染进行研究需要对一些术语进行精确的定义。已构建了一个淡水食物链的简化模型,以试图指出与水环境中镉的存在相关的危害。使用了属于不同营养级但属于同一水生系统的三种不同物种。描述了所需的生物学和分析标准。实验的时间进程为34天,首先对第一营养级(藻类)进行10天的污染。然后将藻类分离,用新鲜培养基洗涤,并喂食给第二营养级(水蚤)20天。接着引入第三营养级(鱼类)作为清道夫4天。该方法旨在确定水蚤以及随后鱼类从藻类来源中积累镉的情况。结果表明藻类中镉的直接生物积累量很高。水蚤的间接生物积累量处于相同数量级,但鱼类的间接生物积累量较小。然而,镉从水蚤向鱼类的转移是明显的。

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