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使用低激光功率的爆炸环境化学过程粒度表征系统可行性研究

Feasibility Study for a Chemical Process Particle Size Characterization System for Explosive Environments Using Low Laser Power.

作者信息

Ross-Jones Jesse, Teumer Tobias, Wunsch Susann, Petri Lukas, Nirschl Hermann, Krause Mathias J, Methner Frank-Jürgen, Rädle Matthias

机构信息

Center for Mass Spectrometry and Optical Spectroscopy, Mannheim University of Applied Sciences, Paul-Wittsack-Straße 10, 68163 Mannheim, Germany.

Lattice Boltzmann Research Group, Institute for Mechanical Process Engineering and Mechanics, Karlsruher Institut für Technologie, Straße am Forum 8, 76131 Karlsruhe, Germany.

出版信息

Micromachines (Basel). 2020 Sep 30;11(10):911. doi: 10.3390/mi11100911.

Abstract

The industrial particle sensor market lacks simple, easy to use, low cost yet robust, safe and fast response solutions. Towards development of such a sensor, for in-line use in micro channels under continuous flow conditions, this work introduces static light scattering (SLS) determination of particle diameter using a laser with an emission power of less than 5 µW together with sensitive detectors with detection times of 1 ms. The measurements for the feasibility studies are made in an angular range between 20° and 160° in 2° increments. We focus on the range between 300 and 1000 nm, for applications in the production of paints, colors, pigments and crystallites. Due to the fast response time, reaction characteristics in microchannel designs for precipitation and crystallization processes can be studied. A novel method for particle diameter characterization is developed using the positions of maxima and minima and slope distribution. The novel algorithm to classify particle diameter is especially developed to be independent of dispersed phase concentration or concentration fluctuations like product flares or signal instability. Measurement signals are post processed and particle diameters are validated against Mie light scattering simulations. The design of a low cost instrument for industrial use is proposed.

摘要

工业颗粒传感器市场缺乏简单易用、低成本且坚固耐用、安全且响应快速的解决方案。为了开发这样一种用于在连续流动条件下在线使用于微通道的传感器,本研究介绍了一种静态光散射(SLS)方法,该方法使用发射功率小于5微瓦的激光以及检测时间为1毫秒的灵敏探测器来测定颗粒直径。可行性研究的测量在20°至160°的角度范围内以2°的增量进行。我们关注300至1000纳米的范围,用于涂料、颜料、色素和微晶生产中的应用。由于响应时间快,可以研究微通道设计中沉淀和结晶过程的反应特性。利用最大值、最小值和斜率分布的位置开发了一种新的颗粒直径表征方法。特别开发的用于分类颗粒直径的新算法与分散相浓度或诸如产品波动或信号不稳定等浓度波动无关。对测量信号进行后处理,并根据米氏光散射模拟对颗粒直径进行验证。提出了一种用于工业用途的低成本仪器的设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d57/7600193/b354f12326bd/micromachines-11-00911-g001.jpg

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