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Soot Particle Agglomeration Inlet (SPAI) for Enabling Online Chemical Composition Measurement of Nanoparticles with the Aerosol Mass Spectrometer

机译:烟灰颗粒聚集入口(SPAI),用于使纳米颗粒的在线化学成分测量用气溶胶质谱仪测量

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Nanoparticles are a topic of interest because of their effects on human health and the climate, but the current options for evaluating their chemical composition—one of the key properties that determine the mechanisms of these effects—remain very limited and often require long collection times. For example, the Soot Particle Aerosol Mass Spectrometer (SP-AMS) is an instrument that measures the chemical properties of particles in real time, but sampling loss fixes its lower particle size limit at 50 nm, thus excluding nanoparticles. Hence, we developed the Soot Particle Agglomeration Inlet (SPAI), an addition to the SP-AMS that enables it to detect and analyze nanoparticles by attaching them to the surfaces of artificially generated soot particles. We characterized and optimized the soot generation and the soot–nanoparticle agglomeration via laboratory testing and then assessed the SPAI’s performance using silver nanoparticles as the test aerosol. The SPAI increased the SP-AMS’s capability to detect the silver nanoparticles by 35 times, demonstrating its potential in resolving issues related to analyzing the chemical composition of nanoparticles, either as an enhancement of the SP-AMS or as an addition to other sample pretreatment systems.
机译:纳米粒子是兴趣的主题,因为它们对人类健康和气候的影响,而是评估其化学成分的目前的选择 - 确定这些效应机制的关键特性之一 - 仍然非常有限,并且通常需要长收集时间。例如,烟灰粒子气溶胶质谱仪(SP-AMS)是一种仪器,其实时测量颗粒的化学性质,但取样损失将其下粒径限制在50nm处,从而排除纳米颗粒。因此,我们开发了烟灰颗粒聚集入口(SPAI),其除了SP-AM的补充,其能够通过将它们附接到人为产生的烟灰颗粒的表面来检测和分析纳米颗粒。我们以实验室检测表征并优化了烟灰产生和烟灰纳米粒子集聚,然后使用银纳米粒子作为试验气溶胶评估SPAI的性能。 SPAI培养了SP-AMS的能力将银纳米粒子检测到35倍,证明其潜力在解决与分析纳米颗粒的化学成分相关的问题中,作为SP-AMS的增强或作为其他样品预处理系统的添加剂。

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