首页> 外文期刊>Journal of Environmental Management >Influence of lead-doped hydroponic medium on the adsorption/ bioaccumulation processes of lead and phosphorus in roots and leaves of the aquatic macrophyte Eicchornia crassipes
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Influence of lead-doped hydroponic medium on the adsorption/ bioaccumulation processes of lead and phosphorus in roots and leaves of the aquatic macrophyte Eicchornia crassipes

机译:掺杂铅的水培介质对水生植物紫草根和叶中铅和磷的吸附/生物富集过程的影响

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In this study, lead bioaccumulation by the living free-floating aquatic macrophyte Eicchomia crassipes in different hydroponic conditions with variations in phosphorus and lead concentrations was investigated. A set of growth experiments in hydroponic media doped with lead and phosphorus within a wide concentration range was performed for 32 days in a greenhouse. All experiments were carried out with periodic replacement of all nutrients and lead. The concentration of lead and nutrients in biomass was determined by synchrotron radiation-excited total reflection X-ray fluorescence. By increasing the lead concentration in the medium, a reduction in biomass growth was observed, but a higher phosphorus retention in roots and leaves was shown at lower lead concentrations. In addition, an increase in the amount of bioaccumulated lead and phosphorus in roots was observed for higher lead and phosphorus concentrations in the medium, reaching saturation values of 4 mg Pb g~(-1) and 7 mg P g~(-1), respectively. Four non-structural kinetic models were tested, to represent the bioaccumulation of lead and phosphorus in roots. Pseudo-second order and irreversible kinetic models described the lead bioaccumulation data well, however, an irreversible kinetic model better fitted phosphorus uptake in roots.
机译:在这项研究中,研究了在不同的水耕条件下磷和铅浓度的变化引起的自由漂浮的水生大型水生棘孢藻的铅生物富集。在温室中,在宽浓度范围内掺有铅和磷的水培培养基中进行了32天的一组生长实验。所有实验均定期更换所有养分和铅。通过同步加速器辐射激发的全反射X射线荧光确定生物质中铅和营养物的浓度。通过增加培养基中铅的浓度,可以观察到生物量的增长减少,但是在较低的铅浓度下,根和叶中的磷保留量更高。此外,培养基中铅和磷的浓度较高时,根部的生物积累铅和磷的量增加,达到饱和值4 mg Pb g〜(-1)和7 mg P g〜(-1) , 分别。测试了四个非结构动力学模型,以表示根中铅和磷的生物富集。伪二级和不可逆动力学模型很好地描述了铅的生物积累数据,但是,不可逆动力学模型更适合根部吸收磷。

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