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互花米草在修复盐沼中的潜力——用于高度污染河口金属的植物修复。

Potential of Spartina maritima in restored salt marshes for phytoremediation of metals in a highly polluted estuary.

出版信息

Int J Phytoremediation. 2014;16(7-12):1209-20. doi: 10.1080/15226514.2013.821451.

Abstract

Sedimentary abiotic environment, and concentration and stock of nine metals were analyzed in vegetation and sediments to evaluate the phytoremediation capacity of restored Spartina maritima prairies in the highly polluted Odiel Marshes (SW Iberian Peninsula). Samples were collected in two 10 -m long rows parallel to the tidal line at two sediments depths (0-2 cm and 2-20 cm). Metal concentrations were measured by inductively coupled plasma spectroscopy. Iron, aluminum, copper, and zinc were the most concentrated metals. Every metal, except nickel, showed higher concentration in the root zone than at the sediment surface, with values as high as ca. 70 g Fe kg(-1). The highest metal concentrations in S. maritima tissues were recorded in its roots (maximum for iron in Spartina roots: 4160.2 +/- 945.3 mg kg(-1)). Concentrations of aluminum and iron in leaves and roots were higher than in superficial sediments. Rhizosediments showed higher concentrations of every metal than plant tissues, except for nickel. Sediment metal stock in the first 20 cm deep was ca. 170.89 t ha(-1). Restored S. maritima prairies, with relative cover of 62 +/- 6%, accumulated ca. 22 kg metals ha(-1). Our results show S. maritima to be an useful biotool for phytoremediation projects in European salt marshes.

摘要

对修复后的滨海盐沼植被和沉积物中的非生物环境、9 种金属的浓度和存量进行了分析,以评估高度污染的奥德耶尔泻湖(伊比利亚半岛西南部)中恢复的滨海盐沼米草的植物修复能力。在平行于潮汐线的两条 10 米长的线上,从两个沉积物深度(0-2 厘米和 2-20 厘米)采集了样本。通过电感耦合等离子体光谱法测量金属浓度。铁、铝、铜和锌是浓度最高的金属。除镍外,每种金属在根区的浓度均高于沉积物表面,最高可达约 70 g Fe kg(-1)。米草组织中金属浓度最高的是根(米草根中铁的最大值:4160.2 +/- 945.3 mg kg(-1))。叶片和根部的铝和铁浓度高于表层沉积物。根际沉积物的每种金属浓度均高于植物组织,除镍外。前 20 厘米深的沉积物中金属存量约为 170.89 吨/公顷。相对覆盖率为 62 +/- 6%的修复后的滨海盐沼米草积累了约 22 公斤金属/公顷。我们的研究结果表明,滨海盐沼米草是欧洲盐沼植物修复项目的一种有用的生物工具。

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