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荻(Miscanthus sacchariflorus)对重金属的生物积累及其从中国洞庭湖湿地去除金属的潜力。

Heavy metal bioaccumulation by Miscanthus sacchariflorus and its potential for removing metals from the Dongting Lake wetlands, China.

机构信息

Hunan Provincial Key Laboratory of Rural Ecosystem Health in Dongting Lake Area, College of Bioscience and Biotechnology, Hunan Agricultural University, Changsha, 410128, China.

Hunan Academy of Forestry, Changsha, 410004, China.

出版信息

Environ Sci Pollut Res Int. 2018 Jul;25(20):20003-20011. doi: 10.1007/s11356-018-2174-0. Epub 2018 May 9.

Abstract

Bioaccumulation of five heavy metals (Cd, Cu, Mn, Pb, and Zn) in six plant organs (panicle, leaf, stem, root, rhizome, and bud) of the emergent and perennial plant species, Miscanthus sacchariflorus, were investigated to estimate the plant's potential for accumulating heavy metals in the wetlands of Dongting Lake. We found the highest Cd concentrations in the panicles and leaves; while the highest Cu and Mn were observed in the roots, the highest Pb in the panicles, and the highest Zn in the panicles and buds. In contrast, the lowest Cd concentrations were detected in the stem, roots, and buds; the lowest Cu concentrations in the leaves and stems; the lowest Mn concentrations in the panicles, rhizomes, and buds; the lowest Pb concentrations in the stems; and the lowest Zn concentrations in the leaves, stems, and rhizomes. Mean Cu concentration in the plant showed a positive regression coefficient with plot elevation, soil organic matter content, and soil Cu concentration, whereas it showed a negative regression coefficient with soil moisture and electrolyte leakage. Mean Mn concentration showed positive and negative regression coefficients with soil organic matter and soil moisture, respectively. Mean Pb concentration exhibited positive regression coefficient with plot elevation and soil total P concentration, and Zn concentration showed a positive regression coefficient with soil available P and total P concentrations. However, there was no significant regression coefficient between mean Cd concentration in the plant and the investigated environmental parameters. Stems and roots were the main organs involved in heavy metal accumulation from the environment. The mean quantities of heavy metals accumulated in the plant tissues were 2.2 mg Cd, 86.7 mg Cu, 290.3 mg Mn, 15.9 mg Pb, and 307 mg Zn per square meter. In the Dongting Lake wetlands, 0.7 × 10 kg Cd, 22.9 × 10 kg Cu, 77.5 × 10 kg Mn, 3.1 × 10 kg Pb, and 95.9 × 10 kg Zn per year were accumulated by aboveground organs and removed from the lake through harvesting for paper manufacture.

摘要

研究了速生多年生植物荻(Miscanthus sacchariflorus)六种器官(穗、叶、茎、根、根茎和芽)中五种重金属(Cd、Cu、Mn、Pb 和 Zn)的生物累积,以评估该植物在洞庭湖湿地积累重金属的潜力。我们发现,Cd 浓度最高的器官是穗和叶;Cu 和 Mn 浓度最高的器官是根,Pb 浓度最高的器官是穗,Zn 浓度最高的器官是穗和芽。相比之下,Cd 浓度最低的器官是茎、根和芽;Cu 浓度最低的器官是叶和茎;Mn 浓度最低的器官是穗、根茎和芽;Pb 浓度最低的器官是茎;Zn 浓度最低的器官是叶、茎和根茎。植物体内 Cu 平均浓度与样地海拔、土壤有机质含量和土壤 Cu 浓度呈正回归系数,与土壤湿度和电导率呈负回归系数。Mn 平均浓度与土壤有机质和土壤湿度呈正、负回归系数。Pb 平均浓度与样地海拔和土壤总磷浓度呈正回归系数,Zn 浓度与土壤有效磷和总磷浓度呈正回归系数。然而,植物体内 Cd 平均浓度与所研究的环境参数之间没有显著的回归系数。茎和根是重金属从环境中积累的主要器官。植物组织中重金属的平均积累量为 2.2mg Cd、86.7mg Cu、290.3mg Mn、15.9mg Pb 和 307mg Zn 每平方米。在洞庭湖湿地,每年通过收割用于造纸,地上器官向湖中积累了 0.7×10kg Cd、22.9×10kg Cu、77.5×10kg Mn、3.1×10kg Pb 和 95.9×10kg Zn。

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