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Trace element storage capacity of sediments in dead P. oceanica mat from a chronically contaminated marine ecosystem

机译:长期受污染的海洋生态系统中死去的海洋运动垫中沉积物的微量元素存储能力

摘要

Posidonia oceanica mat is considered a long-term bioindicator of contamination. Storage and sequestration of trace elementsudand organic carbon (Corg) were assessed in dead P. oceanica mat and bare sediments from a highly polluted coastal marine area (AugustaudBay, central Mediterranean). Sediment elemental composition and sources of organic matter have been altered since the 1950s. DeadudP. oceanica mat displayed a greater ability to bury and store trace elements and Corg than nearby bare sediments, acting as a long-termudcontaminant sink over the past 120 yr. Trace elements, probably associated with the mineral fraction, were stabilized and trapped despiteuddie-off of the overlying P. oceanica meadow. Mat deposits registered historic contamination phases well, confirming their role as naturaludarchives for recording trace element trends in marine coastal environments. This sediment typology is enriched with seagrass-derivedudrefractory organic matter, which acts mainly as a diluent of trace elements. Bare sediments showed evidence of inwash of contaminatedudsediments via reworking; more rapid and irregular sediment accumulation; and, because of the high proportions of labile organic matter, audgreater capacity to store trace elements. Through different processes, both sediment typologies represent a repository for chemicals andudmay pose a risk to the marine ecosystem as a secondary source of contaminants in the case of sediment dredging or erosion.
机译:海洋疫病被认为是污染的长期生物指标。评估和分析了污染严重的沿海海域(地中海中部奥古斯塔 udBay)中死去的大洋洲垫和裸露的沉积物中痕量元素 udand有机碳(Corg)的存储和隔离。自1950年代以来,沉积物的元素组成和有机物来源已发生变化。死 udP。与附近的裸露沉积物相比,大洋洲垫具有更强的掩埋和存储痕量元素和Corg的能力,是过去120年来的长期非污染物汇。尽管上覆大洋云杉草甸脱落,但可能与矿物质含量有关的微量元素已被稳定和捕获。垫沉积物很好地记录了历史性污染阶段,证实了它们作为记录海洋沿海环境中痕量元素趋势的天然替代物的作用。这种沉积物类型丰富了海草衍生的难熔有机物,主要用作微量元素的稀释剂。裸露的沉积物显示出通过返工洗刷了污染沉积物的证据;更快,更不规则的沉积物堆积;并且,由于不稳定有机物的比例很高,因此存储痕量元素的能力更大。通过不同的过程,两种沉积物类型都代表化学物质的储存库,并且在沉积物疏or或侵蚀的情况下,可能会对海洋生态系统构成二次污染物的风险。

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