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Uptake of dissolved nickel by Elodea canadensis and epiphytes influenced by fluid flow conditions

机译:流体流动条件对加拿大伊乐藻和附生植物吸收溶解镍的影响

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摘要

Using a laboratory mesocosm consisting of live plants and epiphytes grown in a re-circulating flume, dissolved nickel uptake by Elodea canadensis Michaux is compared with nickel uptake by the associated epiphytic community under a range of flow conditions. A flux model was developed and applied to the measured tissue nickel concentration data and generated three parameters descriptive of nickel uptake: uptake rate, equilibrium concentration, and time to equilibrium. The relationship of these parameters to flow conditions, represented by the dimensionless variable Reynolds number, was compared between epiphytes and plants. Water flow was shown to have a stronger effect on the uptake performance of epiphytes than that of plants, implying that water-side mass transfer plays a more important role in epiphytic nickel uptake than it does in plant nickel uptake. Although nickel concentrations were much higher in the epiphyte community than in E. canadensis, more total nickel was sequestered in E. canadensis. This research indicates that fluid flow conditions alter nickel uptake by E. canadensis and the epiphytic community and that the two have different preferential flow regimes. It also suggests the promising bioremediation potential of both in moving fluids in aquatic environments.
机译:使用在循环水槽中生长的由活植物和附生植物组成的实验室介观膜,将加拿大伊勒藻(Elodea canadensis Michaux)的溶解镍吸收与相关的附生群落在一定流量条件下的镍吸收进行比较。开发了流量模型,并将其应用于测量的组织镍浓度数据,并生成描述镍吸收的三个参数:吸收率,平衡浓度和达到平衡的时间。在附生植物和植物之间,比较了这些参数与流动条件的关系,用无因次可变的雷诺数表示。结果表明,水流对附生植物的吸收性能的影响要强于植物,这表明水侧传质在附生镍吸收中的作用比植物对镍的吸收更为重要。尽管附生植物群落中的镍浓度比加拿大E.canadensis高得多,但在加拿大E. canadensis中螯合了更多的镍。该研究表明,流体流动条件改变了加拿大大肠埃希菌和附生群落对镍的吸收,并且两者具有不同的优先流动方式。这也表明了在水生环境中移动流体中两种生物修复潜力的潜力。

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