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Heavy metal distribution and accumulation in the Spartina alterniflora from the Andong tidal flat, Hangzhou Bay, China

机译:杭州湾安东滩涂互花米草中重金属的分布与积累

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In order to study the heavy metal accumulation and distribution in the roots, stems, and leaves of Spartina alterniflora, we collected S. alterniflora samples and the associated sediments along three transects at the Andong tidal flat, Hangzhou Bay. Co, Ni, Cd, Pb, Cu, and Zn were mainly accumulated in the aerial parts (stems and leaves) of the plants, and their distributions depended on their mobility and their roles during the metabolism processes of S. alterniflora. The concentrations of Cu, Zn, Cd, Hg, and Pb were significantly enhanced with the increasing of heavy metal concentrations in the sediments, while those of Co and Ni remained relatively constant. Bioaccumulation factors results showed that the serious heavy metal contamination in the sediments from the transect A may overwhelm the accumulation capability of the plants. In addition, the physicochemical properties of the sediments and the pore water therein also play a role in the heavy metal concentrations and accumulations in the plants, because they can influence the behaviors and bioavailabilities of heavy metals during nutrition and bioaccumulation processes of the plants. The sediments with vegetation did not show significantly decreased heavy metal concentration with respect to the unvegetated sediments, although the plants did absorb heavy metals from the sediments. Principal component analysis and correlation analyses indicated that Co-Ni, Cu-Cd-Hg behaved coherently during accumulation, which may be ascribed to their similar accumulation mechanisms. This work provided essential information on the heavy metal accumulation by plants in a tidal flat, which will be useful for the environmental control through phytoremediation at estuaries.
机译:为了研究互花米草的根,茎和叶中重金属的积累和分布,我们在杭州湾安东潮滩的三个样点上收集了互花米草样品和相关的沉积物。 Co,Ni,Cd,Pb,Cu和Zn主要积累在植物的地上部分(茎和叶),其分布取决于互生链霉菌在代谢过程中的迁移率和作用。随着沉积物中重金属浓度的增加,Cu,Zn,Cd,Hg和Pb的浓度显着增加,而Co和Ni的浓度保持相对恒定。生物蓄积因子结果表明,样带A沉积物中严重的重金属污染可能使植物的蓄积能力不堪重负。另外,沉积物和其中的孔隙水的物理化学性质也对植物中重金属的浓度和积累起着作用,因为它们可以影响植物在营养和生物积累过程中重金属的行为和生物利用度。尽管植物确实从沉积物中吸收了重金属,但具有植被的沉积物并未显示出相对于无植被沉积物而言显着降低的重金属浓度。主成分分析和相关分析表明,Co-Ni,Cu-Cd-Hg在累积过程中表现出连贯性,这可能归因于它们相似的累积机理。这项工作提供了有关潮滩中植物重金属积累的重要信息,这将有助于通过河口的植物修复进行环境控制。

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