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一种用于均匀球形颗粒的颗粒物质量浓度的新型角光散射测量方法。

A New Angular Light Scattering Measurement of Particulate Matter Mass Concentration for Homogeneous Spherical Particles.

作者信息

Chen Dong, Liu Xiaowei, Han Jinke, Jiang Meng, Wang Zhaofeng, Qi Jiuxin

机构信息

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

出版信息

Sensors (Basel). 2019 May 15;19(10):2243. doi: 10.3390/s19102243.

Abstract

Under the condition of ultra-low emission for power plants, the particulate matter concentration is significantly lower than that of typical power plants a decade ago, which posed new challenges for the particulate matter monitoring of stationary emission. The monitoring of particulate matter mass concentration based on ensemble light scattering has been found affected by particle size. Thus, this study develops a method of using the scattering angular distribution to obtain the real-time particle size, and then correct the particulate matter concentration with the real-time measured particle size. In this study, a real-time aerosol concentration and particle size measurement setup is constructed with a fixed detector at the forward direction and a rotating detector. The mass concentration is measured by the fixed detector, and the particle size is measured from the intensity ratio of the two detectors. The simulations show that the particle size has power law functionality with the angular spacing of the ripple structure according to Mie theory. Four quartz aerosols with different particle size are tested during the experiment, and the particle size measured from the ripple width is compared with the mass median size measured by an electrical low pressure impactor (ELPI). Both techniques have the same measurement tendency, and the measurement deviation by the ripple width method compared with ELPI is less than 15%. Finally, the measurement error of the real-time mass concentration is reduced from 38% to 18% with correction of the simultaneously measured particle size when particle size has changed.

摘要

在电厂超低排放条件下,颗粒物浓度显著低于十年前的典型电厂,这给固定源排放颗粒物监测带来了新挑战。基于集成光散射的颗粒物质量浓度监测受粒径影响。因此,本研究开发了一种利用散射角分布获取实时粒径,然后用实时测量粒径校正颗粒物浓度的方法。本研究构建了一种实时气溶胶浓度和粒径测量装置,在前向有一个固定探测器和一个旋转探测器。质量浓度由固定探测器测量,粒径通过两个探测器的强度比测量。模拟表明,根据米氏理论,粒径与波纹结构的角间距具有幂律函数关系。实验中测试了四种不同粒径的石英气溶胶,并将从波纹宽度测量的粒径与用电低压冲击器(ELPI)测量的质量中值粒径进行比较。两种技术具有相同的测量趋势,与ELPI相比,波纹宽度法的测量偏差小于15%。最后,当粒径发生变化时,通过同时测量的粒径进行校正,实时质量浓度的测量误差从38%降低到18%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8b8/6567324/a2f90508c8a5/sensors-19-02243-g001.jpg

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