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一种新型的光散射法,具有粒径分析和校正功能,可用于在线测量颗粒物浓度。

A novel light scattering method with size analysis and correction for on-line measurement of particulate matter concentration.

机构信息

State Key Laboratory of Coal Combustion, School of Energy and Power Engineering, Huazhong University of Science and Technology, 1037 Luoyu Road, Wuhan 430074, PR China.

State Key Laboratory of Coal Combustion, School of Energy and Power Engineering, Huazhong University of Science and Technology, 1037 Luoyu Road, Wuhan 430074, PR China.

出版信息

J Hazard Mater. 2021 Jan 5;401:123721. doi: 10.1016/j.jhazmat.2020.123721. Epub 2020 Aug 19.

Abstract

Based on the difference in particle size sensitivity between forward and backscattering during the measurement of particulate matter (PM) mass concentration using laser angular scattering, a method was proposed to improve its on-line measurement accuracy using three fixed detectors. Experimental and theoretical calculations indicate that the PM mass concentration sensitivity (PMCS) of the particles at the 22.5° detection angle and the asymmetry factor (I/I) are linearly related to the average particle size, and both decrease as the particle size increases. The average particle size obtained from the asymmetry factor was used to correct the PMCS. Compared with the unmodified light scattering method, when the PM mass concentration varies in the range of 1-8 mg⋅m, the average deviation between the light scattering method with particle size correction and the reference is reduced from 191.11 % ± 9.12 % to 8.90 % ± 3.20 %, and the maximum deviation is reduced from 227.04 % to 21.54 %. The effect of particle size on the measurement is reduced by size analysis and correction, and the accuracy of the light scattering method is much improved. Finally, laboratory measurements of the fly ash from coal-fired and biomass-fired power plants were performed.

摘要

基于激光角散射法测量颗粒物(PM)质量浓度时前向和后向散射在粒径敏感性方面的差异,提出了一种使用三个固定探测器来提高其在线测量精度的方法。实验和理论计算表明,在 22.5°探测角处的颗粒物质量浓度灵敏度(PMCS)和不对称因子(I/I)与平均粒径呈线性关系,且随粒径增大而减小。使用不对称因子获得的平均粒径用于校正 PMCS。与未经修正的光散射法相比,当 PM 质量浓度在 1-8 mg·m 范围内变化时,经粒径校正的光散射法与参考值之间的平均偏差从 191.11%±9.12%降低至 8.90%±3.20%,最大偏差从 227.04%降低至 21.54%。通过粒径分析和校正,降低了粒径对测量的影响,大大提高了光散射法的精度。最后,对燃煤和生物质发电的飞灰进行了实验室测量。

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