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Real-Time Monitoring of Size and Concentration of Nanoparticles Inside a Reactor Using Ultrasound

机译:使用超声实时监测反应器内纳米颗粒的大小和浓度

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Nanoparticles are applied in an increasing number of products (e.g. medicine, food and cosmetics). There is a need to real-time monitor the growth of nanoparticles during production inside the chemical reactor. However, standard particle sizing methods such as dynamic light scattering (DLS) and transmission electron microscopy (TEM) cannot do this. A suitable candidate may be ultrasonic transmission spectroscopy (UTS). Here, the sound speed and attenuation are measured of a dispersion and a physics based model is inverted and fitted to the measurements. The measurements have to be done with great accuracy: e.g. one should be able to measure frequency dependent variations in the speed of sound smaller than 0.05%. The measurements also have to be carried out fast enough compared to the time scale of the reaction. Moreover, the inversion has to be able to deal with the changing properties of the solvent during particle formation. Here, we report on the new ultrasound nanoparticle sizer (UNPS) that has these abilities and therefore could successfully monitor the size and concentration growth of nanoparticles during a reaction inside a reactor in real-time.
机译:纳米颗粒被应用于越来越多的产品(例如药品,食品和化妆品)中。需要实时监测化学反应器内生产期间纳米颗粒的生长。但是,诸如动态光散射(DLS)和透射电子显微镜(TEM)之类的标准颗粒尺寸测定方法无法做到这一点。合适的候选者可以是超声透射光谱法(UTS)。在此,测量了色散的声速和衰减,并且对基于物理的模型进行了倒置并将其拟合到测量结果中。测量必须非常准确地完成:例如人们应该能够测量小于0.05%的声音速度随频率变化的情况。与反应的时间尺度相比,还必须足够快地进行测量。而且,转化必须能够处理颗粒形成过程中溶剂变化的性质。在这里,我们报告了具有这些功能的新型超声纳米粒度仪(UNPS),因此可以成功地实时监控反应器内部反应过程中纳米颗粒的大小和浓度增长。

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