Metrology Research Institute, Aalto University, Maarintie 8, 02150, Espoo, Finland.
Finnish Meteorological Institute, Erik Palménin Aukio 1, 00560, Helsinki, Finland.
Environ Monit Assess. 2024 Oct 30;196(11):1128. doi: 10.1007/s10661-024-13298-3.
The paper presents a novel technique for quantifying trace metals in aerosol samples in real time. Airborne metals were continuously collected for one week near the Baltic Sea in Finland using a particle-into-liquid sampler (PILS). The collected liquid samples were analyzed for metals using micro-discharge optical emission spectroscopy (µDOES). The micro-discharge analyzer is designed to perform real-time, on-site measurements of metal concentrations in aqueous solutions. Currently, µDOES can provide online measurements of 30 metals, with typical detection limits from 0.01 µg/m to 0.06 µg/m with a long-term repeatability less than 5%. The novelty of this analyzer lies in its compact design, rapid detection capabilities, and ease of operation and maintenance. Several metals, including potassium (K), calcium (Ca), sodium (Na), aluminum (Al), magnesium (Mg), and copper (Cu), were measured in the aerosol samples collected using PILS. The results indicate that this approach has significant potential for future automated online monitoring of airborne metal concentrations, facilitating investigations into their sources and daily variations. The development of real-time technologies for rapid, online, and accurate atmospheric aerosol measurements is essential for advancing climate change research. Such advancements allowing for continuous real-time data enhance our understanding of aerosol dynamics, improve source identification, and inform public health and environmental policies, ultimately contributing to more effective climate change monitoring and mitigation.
本文提出了一种实时定量分析气溶胶样品中痕量金属的新方法。在芬兰波罗的海附近,使用粒子进液采样器(PILS)连续采集了一周的空气金属。使用微放电发射光谱(µDOES)分析收集的液体样品中的金属。微放电分析仪旨在对水溶液中的金属浓度进行实时、现场测量。目前,µDOES 可以在线测量 30 种金属,其典型检测限为 0.01µg/m 至 0.06µg/m,长期重复性小于 5%。该分析仪的新颖之处在于其紧凑的设计、快速的检测能力以及易于操作和维护。使用 PILS 采集的气溶胶样品中测量了钾(K)、钙(Ca)、钠(Na)、铝(Al)、镁(Mg)和铜(Cu)等几种金属。结果表明,这种方法在未来自动在线监测空气中金属浓度方面具有很大的潜力,有助于研究其来源和日变化。开发实时技术,实现大气气溶胶的快速、在线和精确测量,对于推进气候变化研究至关重要。这些实时技术的进步允许连续实时数据,从而增强了我们对气溶胶动力学的理解,改善了源识别,并为公共健康和环境政策提供了信息,最终有助于更有效地监测和缓解气候变化。