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Experimental determination of the steady-state charging probabilities and particle size conservation in non-radioactive and radioactive bipolar aerosol chargers in the size range of 5–40 nm

机译:在5至40 nm大小范围内的非放射性和放射性双极气溶胶充电器的稳态充电概率和粒度守恒的实验确定

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摘要

Three bipolar aerosol chargers, an AC-corona (Electrical Ionizer 1090, MSP Corp.), a soft X-ray (Advanced Aerosol Neutralizer 3087, TSI Inc.), and an α-radiation-based 241Am charger (tapcon & analysesysteme), were investigated on their charging performance of airborne nanoparticles. The charging probabilities for negatively and positively charged particles and the particle size conservation were measured in the diameter range of 5–40 nm using sucrose nanoparticles. Chargers were operated under various flow conditions in the range of 0.6–5.0 liters per minute. For particular experimental conditions, some deviations from the chosen theoretical model were found for all chargers. For very small particle sizes, the AC-corona charger showed particle losses at low flow rates and did not reach steady-state charge equilibrium at high flow rates. However, for all chargers, operating conditions were identified where the bipolar charge equilibrium was achieved. Practically, excellent particle size conservation was found for all three chargers.Electronic supplementary materialThe online version of this article (doi:10.1007/s11051-015-2981-x) contains supplementary material, which is available to authorized users.
机译:三个双极气溶胶充电器,一个AC电晕(电离器1090,MSP公司),软X射线(Advanced Aerosol Neutralizer 3087,TSI Inc.)和一个基于α辐射的 241 研究了Am充电器(tapcon和analysesysteme)对空气中纳米颗粒的充电性能。使用蔗糖纳米粒子在5–40 nm的直径范围内测量带负电和带正电的粒子的带电概率以及粒度守恒。充电器在每分钟0.6-5.0升范围内的各种流量条件下运行。对于特定的实验条件,所有充电器都发现与所选理论模型存在一些偏差。对于非常小的粒径,交流电晕充电器在低流速下显示出颗粒损失,在高流速下未达到稳态电荷平衡。但是,对于所有充电器,都确定了达到双极性电荷平衡的工作条件。实际上,所有三种充电器均具有出色的粒度守恒。电子补充材料本文的在线版本(doi:10.1007 / s11051-015-2981-x)包含补充材料,授权用户可以使用。

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