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Novel Integrative Methods for Sampling Environmental Contaminants.

机译:采样环境污染物的新型集成方法。

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摘要

Up to 25 percent of the operating budget for contaminated site restoration projects is spent on site characterization, including long-term monitoring of contaminant concentrations. The sensitivity, selectivity, and reproducibility of analytical methods have improved to the point where sampling techniques bear the primary responsibility for the accuracy and precision of the data. Most samples represent discrete concentrations in time and space; with sampling points frequently limited in both dimensions, sparse data sets are heavily extrapolated and the quality of data further limited.;Methods are presented for characterizing contaminants in water (groundwater and surface waters) and indoor air. These techniques are integrative, providing information averaged over time and/or space, as opposed to instantaneous point measurements. Contaminants are concentrated from the environment, making these methods applicable to trace contaminants. These methods have the potential to complement existing techniques, providing the practitioner with opportunities to reduce costs and improve the quality of the data used in decision making.;A conceptual model for integrative sampling of environmental waters is developed and a literature review establishes an advantage in precision for active samplers. A programmable sampler was employed to measure the concentration of chromate in a shallow aquifer exhibiting time-dependent contaminant concentrations, providing a unique data set and sustainability benefits. The analysis of heat exchanger condensate, a waste stream generated by air conditioning, is demonstrated in a non-intrusive method for indoor air quality assessment. In sum, these studies present new opportunities for effective, sustainable environmental characterization.
机译:用于污染场地修复项目的运营预算中,多达25%用于场地特征分析,包括对污染物浓度的长期监控。分析方法的灵敏度,选择性和可重复性已经提高到采样技术对数据的准确性和准确性负主要责任的程度。大多数样品代表时间和空间上的离散浓度。由于采样点在两个维度上都经常受到限制,因此稀疏数据集被大量外推,并且数据质量进一步受到限制。提出了表征水(地下水和地表水)和室内空气中污染物的方法。与瞬时点测量相反,这些技术是集成的,可提供在时间和/或空间上平均的信息。污染物从环境中集中出来,使这些方法适用于痕量污染物。这些方法有可能补充现有技术,为从业人员提供降低成本和改善决策所用数据质量的机会。;开发了环境水综合采样的概念模型,文献综述确立了该方法的优势。有源采样器的精度。使用可编程的采样器来测量浅水层中铬酸盐的浓度,表现出随时间变化的污染物浓度,从而提供了独特的数据集和可持续性优势。通过一种非侵入性的室内空气质量评估方法,可以证明对热交换器冷凝物(空调产生的废气流)的分析。总之,这些研究为有效,可持续的环境表征提供了新的机会。

著录项

  • 作者

    Roll, Isaac B.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Environmental engineering.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 193 p.
  • 总页数 193
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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