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Solid-Phase Extraction, Preservation, Storage, Transport, and Analysis of Trace Contaminants for Water Quality Monitoring of Heavy Metals

机译:固相萃取,保存,储存,运输和痕量污染物分析,用于重金属水质监测

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摘要

Accurate quantification of trace contaminants currently requires collection, preservation, and transportation of large volumes (250-1000 mL) of water to centralized laboratories, which impedes monitoring of trace-level pollutants in many resource-limited environments. To overcome this logistical challenge, we propose a new paradigm for trace contaminant monitoring based on dry preservation: solid-phase extraction, preservation, storage, transport, and analysis of trace contaminants (SEPSTAT). We show that a few grams of low-cost, commercially available cation exchange resin can be repurposed to extract heavy metal cations from water samples even in the presence of background ions, dryly preserve these cations for at least 24 months, and release them by acid elution for accurate quantification. A compact, human-powered device incorporating the sorbent removes spiked contaminants from real water samples in a few minutes. The device can be stored and transported easily and produces a sample suitable for measurement by standard methods, predicting the original sample heavy metal concentration generally within an error of 15%. These results suggest that, by facilitating the collection, storage, handling, and transportation of water samples and by enabling cost-effective use of high-throughput capital-intensive instruments, SEPSTAT has the potential to increase the ease and reach of water quality monitoring of trace contaminants.
机译:目前,要对痕量污染物进行准确定量,需要收集,保存和运输大量水(250-1000 mL)到中央实验室,这阻碍了在许多资源有限的环境中对痕量污染物的监测。为了克服这一物流挑战,我们提出了一种基于干燥保存的痕量污染物监测的新范例:固相萃取,保存,存储,运输和分析痕量污染物(SEPSTAT)。我们表明,即使在存在背景离子的情况下,也可以将几克低成本的市售阳离子交换树脂重新用于从水样中提取重金属阳离子,将这些阳离子干燥保存至少24个月,然后通过酸释放它们。洗脱以进行准确定量。紧凑的人力设备结合了吸附剂,可在几分钟内从真实水样中去除加标的污染物。该设备可以轻松存储和运输,并产生适合通过标准方法进行测量的样品,并预测原始样品中的重金属浓度通常在15%的误差内。这些结果表明,通过促进水样品的收集,储存,处理和运输,以及通过以成本效益的方式使用高通量的资本密集型仪器,SEPSTAT有可能增加对水质监测的便捷性和覆盖范围。微量污染物。

著录项

  • 来源
    《Environmental Science & Technology》 |2020年第5期|2646-2657|共12页
  • 作者单位

    Department of Mechanical Engineering and Tata Center for Technology and Design Massachusetts Institute of Technology Cambridge Massachusetts 02139 United States;

    Sloan School of Management and Tata Center for Technology and Design Massachusetts Institute of Technology Cambridge Massachusetts 02139 United States;

    Department of Mechanical Engineering Massachusetts Institute of Technology Cambridge Massachusetts 02139 United States;

    Department of Mechanical Engineering Massachusetts Institute of Technology Cambridge Massachusetts 02139 United States;

  • 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

  • 入库时间 2022-08-18 05:26:33

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