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首页> 外文期刊>Archives of Environmental Contamination and Toxicology >Responses of Lyngbya wollei to exposures of copper-based algaecides: the critical burden concept.
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Responses of Lyngbya wollei to exposures of copper-based algaecides: the critical burden concept.

机译:Lyngbya Wollei对基于铜藻类曝光的影响:临界负担概念。

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The formulation of a specific algaecide can greatly influence the bioavailability, uptake, and consequent control of the targeted alga. In this research, three copper-based algaecide formulations were evaluated in terms of copper sorption to a specific problematic alga and amount of copper required to achieve control. The objectives of this study were (1) to compare the masses of copper required to achieve control of Lyngbya wollei using the algaecide formulations Algimycin-PWF, Clearigate, and copper sulfate pentahydrate in laboratory toxicity experiments; (2) to relate the responses of L. wollei to the masses of copper adsorbed and absorbed (i.e., dose) as well as the concentrations of copper in the exposure water; and (3) to discern the relation between the mass of copper required to achieve control of a certain mass of L. wollei among different algaecide formulations. The critical burden of copper (i.e., threshold algaecide concentration that must be absorbed or adsorbed to achieve control) for L. wollei averaged 3.3 and 1.9?mg Cu/g algae for Algimycin-PWF and Clearigate, respectively, in experiments with a series of aqueous copper concentrations, water volumes, and masses of algae. With reasonable exposures in these experiments, control was not achieved with single applications of copper sulfate despite copper sorption >13?mg Cu/g algae in one experiment. Factors governing the critical burden of copper required for control of problematic cyanobacteria include algaecide formulation and concentration, volume of water, and mass of algae. By measuring the critical burden of copper from an algaecide formulation necessary to achieve control of the targeted algae, selection of an effective product and treatment rate can be calculated at a given field site.
机译:特定藻类的制剂可以大大影响目标藻类的生物利用度,摄取和随后的控制。在该研究中,根据铜吸附对特定的有问题的藻类和耐受控制所需的铜量来评估三种基于铜的藻红典制剂。本研究的目的是(1),以比较使用藻类制剂在实验室毒性实验中使用藻类制剂来实现Lyngbya Wollei控制所需的铜的质量; (2)将L.Wollei的反应与吸收和吸收(即剂量)的质量和吸收(即剂量)的反应相关联,以及暴露水中的铜的浓度; (3)辨别在不同藻类制剂中实现对某种L.Wollei的控制所需的铜质之间的关系。铜的临界负担(即,必须吸收或吸附或吸附或吸附的阈值藻类浓度,以实现对照)对于藻霉素-PWF的3.3和1.9×mg Cu / g藻类,并分别在一系列的实验中进行清除铜浓度水溶液,水体积和藻类群。在这些实验中具有合理的曝光,尽管铜吸附在一个实验中,但在硫酸铜中的单一应用,并未通过单一应用进行控制。控制有问题的蓝杆菌所需铜所需铜的临界负担的因素包括藻红典制剂和浓缩,水体积和藻类的质量。通过测量从抗藻类制剂中获得靶向藻类所需的藻类制剂的临界负担,可以在给定的场地计算有效产品和治疗率的选择。

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