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Interactions of silver nanoparticles with the marine macroalga, Ulva lactuca

机译:银纳米颗粒与海洋大型藻类(Ulva lactuca)的相互作用

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摘要

The marine macroalga, Ulva lactuca, has been exposed for 48 h to different concentrations of Ag added as either silver nanoparticles (AgNP) or aqueous metal (AgNO 3) and the resulting toxicity, estimated from reductions in quenching of chlorophyll-a fluorescence, and accumulation of Ag measured. Aqueous Ag was toxic at available concentrations as low as about 2.5 μg l -1 and exhibited considerable accumulation that could be defined by the Langmuir equation. AgNP were not phytotoxic to the macroalga at available Ag concentrations up to at least 15 μg l -1 and metal measured in U. lactuca was attributed to a physical association of nanoparticles at the algal surface. At higher AgNP concentrations, a dose-response relationship was observed that was similar to that for aqueous Ag recorded at much lower concentrations. These findings suggest that AgNP are only indirectly toxic to marine algae through the dissolution of Ag + ions into bulk sea water, albeit at concentrations orders of magnitude greater than those predicted in the environment.
机译:海洋大藻Ulva lactuca已暴露于银纳米颗粒(AgNP)或水性金属(AgNO 3)中添加的不同浓度的银中48小时,其毒性由叶绿素-a荧光猝灭的减少和测定银的积累。 Ag水溶液在低至约2.5μgl -1的可用浓度下是有毒的,并且表现出可通过Langmuir方程定义的大量积累。 AgNP在可用的Ag浓度至少达到15μgl -1时对大型藻类没有植物毒性,而在U. lactuca中测得的金属归因于纳米颗粒在藻类表面的物理缔合。在较高的AgNP浓度下,观察到的剂量反应关系与在较低浓度下记录的含水Ag相似。这些发现表明,AgNP仅通过将Ag +离子溶解到大量海水中而对海藻具有间接毒性,尽管其浓度比环境中预测的浓度高几个数量级。

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