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首页> 外文期刊>The Science of the Total Environment >Risk assessment of triazine herbicides in surface waters and bioaccumulation of Irgarol and M1 by submerged aquatic vegetation in Southeast Florida
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Risk assessment of triazine herbicides in surface waters and bioaccumulation of Irgarol and M1 by submerged aquatic vegetation in Southeast Florida

机译:佛罗里达东南部地表水中三嗪类除草剂与地表水中水生植被对Irgarol和M1生物富集的风险评估

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摘要

Irgarol is a common antifoulant present in coastal environments experiencing high boating activities. Irgarol, its degradation product M1, and the similarly structured herbicide Atrazine, are highly toxic to non-target marine organisms and thus pose a continual risk to the environment Nearshore areas with intensive boating activity were assessed for environmental exposure to Irgarol, M1, and Atrazine. Irgarol levels up to 241 ng/L were measured in surface water collected at Key Largo Harbor. Irgarol's metabolite. M1, was detected at levels up to 50 ng/L Atrazine levels reached 21 ng/L throughout Miami River, and were also detected in waters within Biscayne Bay Aquatic Preserve at 7 ± 4 ng/L The Irgarol 90th percentile exposure concentration (176 ng/L) in Southeast Florida - including Biscayne Bay - surface waters were found to exceed most toxicity benchmarks, suggesting Irgarol concentrations may be high enough to cause undesired effects on aquatic plants. Indigenous species of SAVs were also collected throughout Southeast Florida and assessed for their Irgarol and Ml bioaccumulation capabilities. All SAV species collected revealed Irgarol bioaccumulation capabilities and a 90th centile bioconcentration factor (BCF) of 9830. Several of those species were also capable of bioaccumulating M1, with a 90th centile BCF of 391. A 43-day in situ transplant between an impacted area and a pristine area within Biscayne Bay waters showed SAVs were able to uptake Irgarol from the environment with quick kinetics: tissue concentrations were 66 times greater than the water concentration within 6 weeks. Halodule and Syringodium had the highest capacity to bioaccumulate from marina surface waters, as indicated by the Irgarol BCF (Halodule = 6809. Syringodium = 6681) and M1 BCF (Halodule = 277, Syringodium = 558). Halodule and Syringodium are therefore the best candidate species to serve as bioindicators indicators of acute Irgarol contamination.
机译:Irgarol是存在于划船活动频繁的沿海环境中的常见防污剂。 Irgarol,其降解产物M1和类似结构的除草剂阿特拉津对非目标海洋生物有剧毒,因此对环境造成持续风险。评估了划船活动频繁的近海地区对Irgarol,M1和阿特拉津的环境暴露。在拉哥港(Key Largo Harbour)收集的地表水中测得的Irgarol含量高达241 ng / L。 Irgarol的代谢产物。在整个迈阿密河中检测到的M1含量高达50 ng / L r去津含量达到21 ng / L,在比斯坎湾水域保护区内的水中也检测到7±4 ng / L Irgarol暴露浓度的90%(176 ng / L)在佛罗里达州东南部(包括比斯坎湾)的地表水超过了大多数毒性基准,这表明Irgarol的浓度可能足够高,会对水生植物造成不良影响。 SAV的本地物种也被收集到整个佛罗里达东南部,并对其Irgarol和M1生物蓄积能力进行了评估。收集到的所有SAV物种均具有Irgarol的生物蓄积能力,其90%的生物富集因子(BCF)为9830。其中一些物种也具有生物蓄积性,M1的生物富集能力为90%的BCF为391。在受影响区域之间进行了43天的原位移植比斯坎湾水域的原始区域显示SAV能够以快速的动力学从环境中吸收Irgarol:6周内组织浓度是水浓度的66倍。如Irgarol BCF(Halodule =6809。Syringodium= 6681)和M1 BCF(Halodule = 277,Syringodium = 558)所示,Halodule和Syringodium具有从码头地表水中生物蓄积的最高能力。因此,Halodule和Syringodium是用作急性Irgarol污染的生物指示剂指标的最佳候选物种。

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  • 来源
    《The Science of the Total Environment》 |2016年第15期|1556-1571|共16页
  • 作者单位

    Department of Chemistry & Biochemistry, Florida International University and Southeast Environmental Research Center (SERC),3000 NE 151 Street, Biscayne Bay Campus, Marine Science Building, MSB 356, North Miami, FL 33181, USA;

    Department of Chemistry & Biochemistry, Florida International University and Southeast Environmental Research Center (SERC), 3000 NE 151 Street, Biscayne Bay Campus, Marine Science Building, MSB 356, North Miami, FL 33181, USA, 3000 NE 151 Street, Biscayne Bay Campus, Marine Science Building, North Miami, FL 33181, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Irgarol; Florida; Submerged Aquatic Vegetation; Bioaccumulation; Atrazine; Transplant;

    机译:Irgarol;佛罗里达;淹没的水生植被;生物蓄积;阿特拉津;移植;

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