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The influence of nutrient loading on methylmercury availability in Long Island estuaries

机译:营养加载对长岛河口甲基汞可用性的影响

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摘要

Estuaries provide critical habitat for food webs supporting fish and shellfish consumed by humans, but estuarine ecosystem health has been threatened by increases in nitrogen loading as well as inputs of the neurotoxin, mercury (Hg), which biomagnifies in food webs and poses risk to humans and wildlife. In this study, the effects of nutrient loading on the fate of Hg in shallow coastal estuaries were examined to evaluate if their interaction enhances or reduces Hg bioavailability in sediments, the water column, and concentrations in lower trophic level fish (Fundulus heteroclitus and Menidia menidia). Multiple sites were sampled within two human impacted coastal lagoons, Great South Bay (GSB) and Jamaica Bay (JB), on the southern coast of Long Island, NY, United States of America (U.S.A.). Carbon (C), nitrogen (N), sulfur (S), Hg, and methylmercury (MeHg) were measured in surface sediments and the water column, and total Hg (THg) was measured in two species of forage fish. Minimal differences were found in dissolved and particulate Hg, dissolved organic carbon (DOC), and salinity between the two bays. Across lagoons, concentrations of chlorophyll-a were correlated with total suspended solids (TSS), and water column THg and MeHg was largely associated with the particulate fraction. Methylmercury concentrations in particulates decreased with increasing TSS and chlorophyll-a, evidence of biomass dilution of MeHg with increasing productivity at the base of the food chain. Water column Hg was associated with THg concentrations in Atlantic silversides, while mummichog THg concentrations were related to sediment concentrations, reflecting their different feeding strategies. Finally, higher nutrient loading (lower C:N in sediments) while related to lower particulate concentrations coincided with higher bioaccumulation factors (BAF) for Hg in both fish species. Thus, in shallow coastal lagoons, increased nutrient loading resulted in decreased Hg concentrations at the base of the food web but resulted in greater bioaccumulation of Hg to fish relative to its availability in algal food. (C) 2020 Elsevier Ltd. All rights reserved.
机译:河口为人类消费的鱼类和贝类的食物网提供关键栖息地,但河口生态系统健康受到氮气荷载的增加以及神经毒素,汞(Hg)的输入,其中食品纤维网的生物造成,对人类构成风险和野生动物。在这项研究中,研究了营养加载对浅沿海河口中Hg的命运的影响,评价它们的相互作用在沉积物中的相互作用,水柱和低级营养水平鱼中的浓度增强或降低Hg生物利用度(基质杂志和metidia )。在纽约州纽约州长南部海岸(U.S.A.),在两个人类受影响的沿海泻湖,大南湾(GSB)和牙买加湾(JB)中进行了多个网站。在表面沉积物和水柱中测量碳(C),氮(N),硫,Hg和甲基汞(MeHG),并以两种牧草鱼测量总Hg(THG)。在溶解和颗粒Hg,溶解的有机碳(DOC)和两个海湾之间的盐度中发现了最小差异。横跨泻龙,叶绿素-A的浓度与总悬浮固体(TSS)相关,水柱THG和MEHG大致与颗粒级分相关。颗粒中的甲基汞浓度随着TSS和叶绿素-A的增加而降低,MEHG的生物量稀释证据随着食物链碱的生产率而增加。水柱HG与大西洋银渣中的THG浓度有关,而Mummichog THG浓度与沉积物浓度有关,反映其不同的饲养策略。最后,较高的营养负载(沉积物中的C:N),而在鱼种中具有较高的颗粒浓度与较高的生物积累因子(BAF)相一致。因此,在浅沿海泻湖中,增加的营养负荷导致食物网底部的Hg浓度降低,但导致Hg对鱼类的更大生物累积相对于其在藻类食物中的可用性。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Environmental Pollution》 |2021年第2期|115510.1-115510.11|共11页
  • 作者单位

    Dartmouth Coll Dept Biol Sci 78 Coll St Hanover NH 03755 USA;

    Dartmouth Coll Dept Biol Sci 78 Coll St Hanover NH 03755 USA;

    Syracuse Univ Dept Civil & Environm Engn 151 Link Hall Syracuse NY 13244 USA;

    Dartmouth Coll Dept Biol Sci 78 Coll St Hanover NH 03755 USA|Univ Illinois Program Ecol Evolut & Conservat Biol 1102 S Goodwin Ave Urbana IL 61801 USA;

    Syracuse Univ Dept Civil & Environm Engn 151 Link Hall Syracuse NY 13244 USA;

    Syracuse Univ Dept Civil & Environm Engn 151 Link Hall Syracuse NY 13244 USA;

    Syracuse Univ Dept Civil & Environm Engn 151 Link Hall Syracuse NY 13244 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Methylmercury; Bioaccumulation; Sediment; Suspended particulate matter; Biomass dilution;

    机译:甲基汞;生物累积;沉积物;悬浮颗粒物质;生物质稀释;

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