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Linking innovative measurement technologies (ConMon and Dataflow (c) systems) for high-resolution temporal and spatial dissolved oxygen criteria assessment

机译:链接创新的测量技术(ConMon和Dataflow(c)系统)以进行高分辨率的时空溶解氧标准评估

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摘要

One consequence of nutrient-induced eutrophication in shallow estuarine waters is the occurrence of hypoxia and anoxia that has serious impacts on biota, habitats, and biogeochemical cycles of important elements. Because of the important role of dissolved oxygen (DO) on these ecosystem features, a variety of DO criteria have been established as indicators of system condition. However, DO dynamics are complex and vary on time scales ranging from diel to decadal and spatial scales from meters to multiple kilometers. Because of these complexities, determining DO criteria attainment or failure remains difficult. We propose a method for linking two common measurement technologies for shallow water DO criteria assessment using a Chesapeake Bay tributary as a test case. Dataflow (c) is a spatially intensive (30-60-m collection intervals) system used to map surface water conditions at the whole estuary scale, and ConMon is a high-frequency (15-min collection intervals) fixed station approach. The former technology is effective with spatial descriptions but poor regarding temporal resolution, while the latter provides excellent temporal but very limited spatial resolution. Our methodology for combining the strengths of these measurement technologies involved a sequence of steps. First, a statistical model of surface water DO dynamics, based on temporally intense ConMon data, was developed. The results of this model were used to calculate daily DO minimum concentrations. Second, this model was then inserted into Dataflow (c)-generated spatial maps of DO conditions and used to adjust measured DO concentrations to daily minimum concentrations. This information was used to assess DO criteria compliance at the full tributary scale. Model results indicated that it is vital to consider the short-term time scale DO criteria across both space and time concurrently. Large fluctuations in DO occurred within a 24-h time period, and DO dynamics varied across the length and width of the tributary. The overall result provided a more detailed and realistic characterization of the shallow water DO minimum conditions that have the potential to be extended to other tributaries and regions. Broader applications of this model include instantaneous DO criteria assessment, utilizing this model in combination with aerial remote sensing, and developing DO amplitude as an indicator of impaired water bodies.
机译:在浅河口水域,养分引起的富营养化的结果之一就是缺氧和缺氧的发生,对重要元素的生物区,生境和生物地球化学循环产生严重影响。由于溶解氧(DO)在这些生态系统特征上的重要作用,已经建立了各种DO标准作为系统状况的指标。但是,溶解氧动力学很复杂,时间尺度从diel到年代际变化,从米到几千米的空间尺度不等。由于这些复杂性,确定DO标准达到或失败仍然很困难。我们提出一种方法,以切萨皮克湾支流为测试案例,将两种常用的测量技术联系在一起,用于浅水溶解氧标准评估。数据流(c)是一个空间密集型(30-60米的收集间隔)系统,用于在整个河口尺度上绘制地表水状况,而ConMon是一种高频(15分钟的收集间隔)固定站方法。前一种技术在空间描述方面很有效,但在时间分辨率方面差强人意,而后者则提供了出色的时间分辨率,但空间分辨率却非常有限。我们结合这些测量技术优势的方法论涉及一系列步骤。首先,基于时间密集的ConMon数据,建立了地表水溶解氧动力学的统计模型。该模型的结果用于计算每日溶解氧最低浓度。其次,将该模型插入到Dataflow(c)生成的DO条件的空间图中,并用于将测得的DO浓度调整为每日最低浓度。该信息用于评估整个支流规模的DO标准符合性。模型结果表明,同时考虑空间和时间上的短期时标DO准则至关重要。 DO的大幅度波动在24小时内发生,DO动力学在支流的长度和宽度上变化。总体结果提供了对浅水DO最低条件的更详细和现实的表征,这些最低条件可能会扩展到其他支流和地区。该模型的广泛应用包括瞬时溶解氧标准评估,将该模型与航空遥感技术结合使用以及将溶解氧振幅发展为水体受损的指标。

著录项

  • 来源
    《Environmental Monitoring and Assessment》 |2016年第10期|543.1-543.15|共15页
  • 作者单位

    SUNY Stony Brook, Sch Marine & Atmospher Sci, Stony Brook, NY 11947 USA;

    2000 Kings Landing Rd, Huntingtown, MD 20639 USA;

    Univ Maryland, Chesapeake Biol Lab, Ctr Environm Sci, POB 38, Solomons, MD 20688 USA;

    Univ Maryland, Chesapeake Biol Lab, Ctr Environm Sci, POB 38, Solomons, MD 20688 USA;

    Univ Maryland, Chesapeake Biol Lab, Ctr Environm Sci, POB 38, Solomons, MD 20688 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

    Dissolved oxygen; Hypoxia; Chesapeake; Dataflow (c); ConMon; Assessment;

    机译:溶解氧;缺氧;切萨皮克;数据流(c);ConMon;评估;

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