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首页> 外文期刊>The Science of the Total Environment >Development and evaluation of a novel monitor for online measurement of iron, manganese, and chromium in ambient particulate matter (PM)
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Development and evaluation of a novel monitor for online measurement of iron, manganese, and chromium in ambient particulate matter (PM)

机译:开发和评估用于在线测量环境颗粒物(PM)中铁,锰和铬的新型监测仪

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摘要

A prototype atmospheric aerosol monitor was developed for online measurement of three toxicologically relevant redox-active metals (Fe, Mn, and Cr) in ambient fine particulate matter (PM_(2.5)). The monitor has the unique ability to quantify these metals in specific chemical oxidation states in addition to both their total and water-soluble fractions in the ambient PM_(2.5). This information is critical for advancing our understanding of mechanisms of PM-induced toxicity as well as chemical processing of aerosol in the atmosphere. The metal monitor utilizes a high flow rate aerosol-into-liquid collector to collect ambient PM_(2.5) directly as concentrated aqueous slurry samples. The concentrations of target metals in the collected slurries are subsequently measured in a aerosol-into-liquid collector, micro volume flow cell (MVFC) using spectrophotometry to quantify the light absorption of colored complexes resulting from the reaction between the target metals and added analytical reagents. Our experimental evaluation indicated that, overall, this novel monitor can achieve accurate and reliable measurements over long sampling periods (i.e. at least several weeks). The online measurements for all three target elements were in good agreement (i.e., with slopes of the linear regression lines ranging between 0.90 and 1.07, and R~2 values between 0.76 and 0.95) with time-integrated filter samples collected in parallel and analyzed by magnetic sector inductively coupled plasma mass spectrometry (SF-ICPMS). Moreover, this metal monitor can provide semi-continuous measurements (i.e., every 2 h) for at least 5 consecutive days without obvious shortcomings in its field operation. The online monitor measured total concentrations of Fe that ranged between 4.8 and 65.6 ng/m~3, for Mn from below detection limit to 10.0 ng/m~3, and for Cr from below detection limit to 6.6 ng/m~3, respectively. Our results indicate that the developed metal monitor is a promising technology for online measurement and chemical speciation of important redox-active metals in ambient PM_(2.5).
机译:开发了原型大气气溶胶监测器,用于在线测量环境细颗粒物(PM_(2.5))中的三种毒理学相关的氧化还原活性金属(Fe,Mn和Cr)。除了在环境PM_(2.5)中的总和水溶性分数外,该监测仪还具有定量分析特定化学氧化态中这些金属的独特能力。这些信息对于增进我们对PM诱发毒性机理以及大气中气溶胶化学处理的理解至关重要。金属监测器利用高流速气溶胶进液收集器直接收集环境PM_(2.5)作为浓缩的水浆样品。随后使用分光光度法在气溶胶转化液体收集器,微体积流动池(MVFC)中测量收集的浆料中目标金属的浓度,以量化目标金属与添加的分析试剂之间反应产生的有色配合物的光吸收。我们的实验评估表明,总体而言,这款新颖的显示器可以在较长的采样周期(即至少几周)内实现准确而可靠的测量。对三个目标元素的在线测量结果具有良好的一致性(即线性回归线的斜率在0.90至1.07之间,R〜2值在0.76至0.95之间)与并行收集并通过磁区电感耦合等离子体质谱(SF-ICPMS)。而且,这种金属监测器可以连续至少5天进行半连续测量(即每2小时),而在其现场操作中没有明显的缺点。在线监测仪测得的Fe的总浓度在4.8至65.6 ng / m〜3之间,Mn从检测限以下至10.0 ng / m〜3,Cr在检测限以下至6.6 ng / m〜3之间。 。我们的结果表明,开发的金属监测仪是一种在线测量和检测环境PM_(2.5)中重要氧化还原活性金属的化学形态的有前途的技术。

著录项

  • 来源
    《The Science of the Total Environment 》 |2016年第15期| 123-131| 共9页
  • 作者单位

    Department of Civil and Environmental Engineering, University of Southern California, Los Angeles, CA, USA;

    Department of Civil and Environmental Engineering, University of Southern California, Los Angeles, CA, USA;

    Environmental Chemistry and Technology Program, University of Wisconsin-Madison, Madison, WI, USA,Wisconsin State Laboratory of Hygiene, University of Wisconsin-Madison, Madison, WI, USA;

    Environmental Chemistry and Technology Program, University of Wisconsin-Madison, Madison, WI, USA,Wisconsin State Laboratory of Hygiene, University of Wisconsin-Madison, Madison, WI, USA;

    Department of Civil and Environmental Engineering, University of Southern California, Los Angeles, CA, USA, 3620 S. Vermont Ave, KAP210, Los Angeles, CA 90089, USA;

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

    Online metal measurement; Fe; Mn; Cr; Aerosol-into-liquid collector; Spectrophotometry;

    机译:在线金属测量;铁锰;铬气雾化液体收集器;分光光度法;

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