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石龙芮对痕量金属的积累:对植物稳定化的启示。

Trace metal accumulation by Ranunculus sceleratus: implications for phytostabilization.

机构信息

Botany and Microbiology Department, Faculty of Science, Helwan University, Cairo, Egypt.

出版信息

Environ Sci Pollut Res Int. 2018 Feb;25(5):4214-4222. doi: 10.1007/s11356-017-0808-2. Epub 2017 Nov 25.

Abstract

This study investigated the growth response of Ranunculus sceleratus to pollution and its capacity to accumulate trace metals for its use as a phytoremediator in Lake Maruit, Egypt. Three basins (main basin, fish farm, and southwestern basin) representing the natural distribution of the plant as well as the pollution loads in the lake, were chosen for collecting plant and sediment samples. In each basin ten quadrats (0.5 m × 0.5 m), distributed equally along two sites, were selected for measuring growth parameters, nutrients, and trace metal concentration. The highest biomass of the shoot and root (610 and 236 g m) was recorded in the main basin and fish farm, respectively. R. sceleratus accumulated high concentrations of Cu and Pb (27.7 and 9.9 mg kg), while toxic concentration of Mn (2508.0 mg kg) in their roots compared to shoots. The bioaccumulation factor (BF) for the investigated metals was greater than one, and in the decreasing order: Ni (27.1) > Zn (20.0) > Cd (16.4) > Cu (7.7) > Mn (3.9) > Pb (3.6). The translocation factor of all analyzed trace metals was less than one. The ability of R. sceleratus to accumulate Mn, Ni, Cu, and Pb in its roots indicates the potential use of this species for phytostabilization of these metals (mainly Mn) in contaminated water bodies.

摘要

本研究调查了Ranunculus sceleratus 对污染的生长响应及其积累痕量金属的能力,以便将其用作埃及 Maruit 湖的植物修复剂。选择了三个流域(主流域、养鱼场和西南流域),以代表植物的自然分布和湖泊中的污染负荷,用于采集植物和沉积物样本。在每个流域中,沿两个站点均匀分布的十个样方(0.5 m×0.5 m)被选择用于测量生长参数、养分和痕量金属浓度。茎和根的最高生物量(610 和 236 g m)分别记录在主流域和养鱼场。与茎相比,R. sceleratus 在其根部积累了高浓度的 Cu 和 Pb(分别为 27.7 和 9.9 mg kg),而 Mn 的毒性浓度(2508.0 mg kg)。研究金属的生物富集因子(BF)大于一,按降序排列:Ni(27.1)>Zn(20.0)>Cd(16.4)>Cu(7.7)>Mn(3.9)>Pb(3.6)。所有分析痕量金属的迁移因子均小于一。R. sceleratus 在根部积累 Mn、Ni、Cu 和 Pb 的能力表明,该物种具有用于稳定受污染水体中这些金属(主要是 Mn)的植物修复潜力。

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