首页> 外文期刊>Journal of environmental monitoring: JEM >Low-flow active and passive sampling of VOCs using thermal desorption tubes: theory and application at an offset printing facility
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Low-flow active and passive sampling of VOCs using thermal desorption tubes: theory and application at an offset printing facility

机译:使用热脱附管对VOC进行低流量主动和被动采样:胶版印刷设备的理论和应用

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摘要

While air sampling technique using adsorbent-based collection, thermal desorption and chromatographic analysis have found a niche in ambient air sampling, occupational applications have been more limited. This paper evaluates the use of thermal desorption techniques for low flow active and passive sampling configurations which allow conveniently long duration sampling in occupational settings and other high concentration environments. The use of an orifice enable;s flows as low as 0.5 ml min~(-1) and sampling periods up to several days without significant biases. A model is used to predict sampling rates of a passive sampler encompassing an orifice, a void space, glass wool, and the adsorbent. Laboratory and field tests conducted at a commercial offset printing facility, which contained a variety of volatile organic compounds (primarily aromatic but also a few chlorinated and terpene compounds at levels from 1 to 67,000 μg m~(-3)), are used to evaluate the approach. Tenax GR and Carbosieve SIII, both singly and together, were employed as adsorbents. Side-by-side tests comparing high flow, low flow and passive samplers show excellent agreement and high linearity (r = 0.95) for concentrations spanning nearly five orders of magnitude. Active samplers were tested at flows as low as 0.5 ml min~(-1), compared to typical flows up to 40 ml min~(-1). Passive samplers demonstrated a linear range and agreement with predictions for adsorbate loadings from ~1 ng to nearly 10 μg. Using a chemical mass balance receptor model, concentrations in the facility were apportioned to solvents, inks and other indoor and outdoor sources. Overall, the use of low flow active and passive sampling approaches employing thermal desorption techniques provides good performance and tremendous flexibility that facilitates use in many applications, including workplace settings.
机译:尽管使用基于吸附剂的收集,热脱附和色谱分析的空气采样技术在环境空气采样中发现了一个利基市场,但职业应用受到了更大的限制。本文评估了热解吸技术在低流量主动和被动采样配置中的使用,这些配置允许在职业环境和其他高浓度环境中方便地进行长时间采样。孔口的使用使流量低至0.5 ml min〜(-1),采样时间长达数天,且无明显偏差。使用模型预测包含孔口,空隙空间,玻璃棉和吸附剂的无源采样器的采样率。在商业胶印设备上进行的实验室和现场测试用于评估各种挥发性有机化合物(主要是芳香族化合物,还含有少量的氯和萜烯化合物,含量为1至67,000μgm〜(-3))。该方法。 Tenax GR和Carbosieve SIII单独或一起用作吸附剂。并行测试比较了高流量,低流量和无源采样器,显示浓度范围接近五个数量级的出色一致性和高线性(r = 0.95)。主动采样器的流量低至0.5 ml min〜(-1),而典型流量高达40 ml min〜(-1)。被动采样器显示出线性范围,并且与从〜1 ng到接近10μg的吸附物负载量的预测一致。使用化学物质平衡受体模型,将设施中的浓度分配给溶剂,墨水和其他室内和室外来源。总体而言,使用采用热脱附技术的低流量主动和被动采样方法可提供良好的性能和极大的灵活性,从而有助于在许多应用中使用,包括工作场所环境。

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