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Design and Laboratory Evaluation of a Sequential Spot Sampler for Time-Resolved Measurement of Airborne Particle Composition

机译:航空颗粒物时间分辨测量的顺序点采样器的设计和实验室评估

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摘要

A new sampling approach has been developed to enable affordable, time-resolved monitoring of particulate chemical compositions, and more generally to provide concentrated samples of airborne particles. Using a newly developed, moderated water-based condensational growth technology, individual particle samples are deposited in a 1-mm diameter dry “spot”. The moderated condensation technology enables this collection with minimal temperature rise, providing robust collection for volatile constituents. Measured collection efficiencies are above 95% for particles in the size range from 0.010 μm to 2.5 μm. A set of 20 or more time-resolved samples, plus blanks, may be collected onto a multiwell collection plate. For chemical analysis the plate is returned to the laboratory, and placed directly into a modified autosampler, without extraction or preparation. The autosampler handles the addition of eluent, extraction, and sample injection without user manipulation. This paper presents the design and laboratory evaluation of a 1.5 L/min sampling rate version of this system.
机译:已经开发出一种新的采样方法,以实现可负担的,时间分辨的颗粒化学成分监测,并且更广泛地提供空气中颗粒的浓缩样品。使用新开发的,适度的水基凝结生长技术,将单个颗粒样品沉积在直径为1毫米的干燥“斑点”中。适度的冷凝技术使这种收集具有最小的温度升高,可为挥发性成分提供可靠的收集。对于尺寸范围从0.010微米到2.5微米的颗粒,测得的收集效率超过95%。可以将一组20个或更多时间分辨的样品以及空白样品收集到多孔收集板上。为了进行化学分析,将板返回实验室,并直接放入改良的自动进样器中,无需提取或制备。自动进样器无需用户操作即可处理洗脱液,提取和进样。本文介绍了该系统1.5 L / min采样率版本的设计和实验室评估。

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