首页> 外文期刊>Environmental Management >Response to Julian et al. (2015) 'Comment on and Reinterpretation of Gabriel et al. (2014) 'Fish Mercury and Surface Water Sulfate Relationships in the Everglades Protection Area''
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Response to Julian et al. (2015) 'Comment on and Reinterpretation of Gabriel et al. (2014) 'Fish Mercury and Surface Water Sulfate Relationships in the Everglades Protection Area''

机译:对朱利安(Julian)等人的回应。 (2015年)“对加布里埃尔(Gabriel)等人的评论和重新诠释。 (2014)大沼泽地保护区的鱼汞和地表水硫酸盐关系

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摘要

The purpose of this forum is to respond to a rebuttal submitted by Julian et al., Environ Manag 55:1-5, 2015 where they outlined their overall disagreement with the data preparation, methods, and interpretation of results presented in Gabriel et al. (Environ Manag 53:583-593, 2014). Here, we provide background information on the research premise presented in Gabriel et al. (Environ Manag 53:583-593, 2014) and provide a defense for this work using five themes. In spite of what Julian et al. perceive as limitations in the sampling methods and analytical tools used for this work, the relationships found between fish total mercury and surface water sulfate concentrations in Gabriel et al. (Environ Manag 53:583-593, 2014) are comparable to relationships between pore water methylmercury (MeHg) and pore water sulfate found in past studies indicating that sulfate is important to MeHg production and bioaccumulation in the Everglades. Julian et al. state "...there is no way to justify any ecosystem-wide sulfur strategy as a management approach to reduce mercury risk in the (Everglades) as suggested by Gabriel et al. (Environ Manag 53:583-593, 2014), Corrales et al. (Sci Tot Environ 409:2156-2162, 2011) and Orem et al. (Rev Environ Sci Technol 41 (Sl):249-288, 2011)." We disagree, and having stated why sulfate input reduction to the Everglades may be the most effective means of reducing mercury in Everglades fish, it is important that research on sulfur and mercury biogeochemistry continues. If further studies support the relationship between sulfate loading reduction and MeHg reduction, sulfur mass balance studies should commence to (1) better quantify agricultural and connate seawater sulfate inputs and (2) define opportunities to reduce sulfate inputs to the Everglades ecosystem.
机译:这个论坛的目的是回应朱利安(Julian)等人在《环境管理》(Environ Manag)55:1-5,2015中提出的反驳,他们概述了他们对加布里埃尔(Gabriel)等人中提出的数据准备,方法和结果解释的总体分歧。 (Environ Manag 53:583-593,2014)。在这里,我们提供有关Gabriel等人提出的研究前提的背景信息。 (Environ Manag 53:583-593,2014),并使用五个主题为这项工作辩护。尽管朱利安等人。加布里埃尔(Gabriel)等人将鱼类总汞与地表水中硫酸盐浓度之间的关系看作是用于这项工作的采样方法和分析工具的局限性。 (Environ Manag 53:583-593,2014)与过去研究中发现的孔隙水甲基汞(MeHg)和孔隙水硫酸盐之间的关系具有可比性,表明硫酸盐对大沼泽地地区的MeHg产生和生物蓄积很重要。朱利安(Julian)等人。状态“ ...如Gabriel等人所建议(Environ Manag 53:583-593,2014),Corrales,没有任何方法可以证明整个生态系统范围内的硫战略作为降低(大沼泽地)汞风险的一种管理方法等人(Sci Tot Environ 409:2156-2162,2011)和Orem等人(Rev Environ Sci Technol 41(Sl):249-288,2011)。我们不同意,并且已经陈述了为什么减少对大沼泽地的硫酸盐输入可能是减少大沼泽地鱼类中汞的最有效方法,重要的是继续进行硫和汞生物地球化学研究。如果进一步的研究支持减少硫酸盐负荷和减少MeHg之间的关系,则应进行硫质量平衡研究,以(1)更好地量化农业和原生海水中的硫酸盐输入量,以及(2)确定减少向大沼泽地生态系统输入硫酸盐的机会。

著录项

  • 来源
    《Environmental Management》 |2015年第6期|1227-1231|共5页
  • 作者单位

    International Joint Commission, 2000 L Street NW, Suite 615, Washington, DC 20440, USA;

    Institute of Public Health, Florida A&M University, 1515 S. Martin Luther King, Jr. Blvd., Tallahassee, FL 32307, USA;

    U.S. Geological Survey, 12201 Sunrise Valley, Reston, VA 20192, USA;

    Wetland Biogeochemistry Laboratory, Soil and Water Science Department, University of Florida, 2181 McCarty Hall A, P.O. Box 11029, Gainesville, FL 32611, USA,Whitney Laboratory for Marine Bioscience, University of Florida, 9505 N Ocean Shore Blvd, St. Augustine, FL 32080, USA;

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

    Everglades; Sulfate; Mercury; Fish;

    机译:大沼泽地硫酸盐汞;鱼;

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