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On the Performance of an Aerosol Electrometer with Enhanced Detection Limit

机译:具有提高的检测极限的气溶胶静电计的性能

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摘要

An aerosol electrometer with enhanced detection limit was developed for measuring the collected particles electrical current ranging from −50 pA to 50 pA with no range switching necessary. The detection limit was enhanced by suppressing the electric current measurement noise and improving the detection efficiency. A theoretical model for the aerosol electrometer has been established to investigate the noise effect factors and verified experimentally. The model showed that the noise was a function of ambient temperature, and it was affected by the characteristics of feedback resistor and operational amplifier simultaneously. The Faraday cup structure of the aerosol electrometer was optimized by adopting a newly designed cup-shaped metal filter which increased the surface area of the cup; thus the particle interception efficiency was improved. The aerosol electrometer performance-linearity, noise and the particle detection efficiency, were evaluated experimentally. When compared with TSI-3068B, a 99.4% (R2) statistical correlation was achieved. The results also showed that the root mean square noise and the peak-to-peak noise were 0.31 fA and 1.55 fA, respectively. The particle detection efficiency was greater than 99.3% when measuring particle diameter larger than 7.0 nm.
机译:开发了具有增强的检测极限的气溶胶静电计,用于测量收集的颗粒电流,范围为-50 pA至50 pA,而无需进行范围切换。通过抑制电流测量噪声并提高检测效率来提高检测极限。建立了气溶胶静电计的理论模型,以研究噪声影响因素并进行了实验验证。该模型表明,噪声是环境温度的函数,并且同时受到反馈电阻和运算放大器特性的影响。气溶胶静电计的法拉第杯结构通过采用新设计的杯形金属过滤器进行了优化,从而增加了杯的表面积。从而提高了粒子的拦截效率。实验评估了气溶胶静电计的性能线性度,噪声和颗粒检测效率。与TSI-3068B相比,为99.4%( R 2 )实现了统计相关。结果还表明,均方根噪声和峰峰值噪声分别为0.31 fA和1.55 fA。当测量大于7.0 nm的粒径时,颗粒检测效率大于99.3%。

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