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Multiparameter Characterization of Aerosols
The performance of particle‐based products depends on a multiple set of particle properties. To monitor them during particle manufacturing, three novel aerosol measurement techniques were developed: wide‐angle light scattering (WALS), three‐dimensional laser scattering (3D‐LSS), and differential aerodynamic particle sizing (DAPS). They measure particle shape, aggregate structure, and particle size, i.e., radius of gyration and aerodynamic diameter. The techniques were tested for rod‐like organic pigments and partially sintered SiO2 aggregates, which were produced by two new aerosol generators.
Multiparameter Characterization of Aerosols
The performance of particle‐based products depends on a multiple set of particle properties. To monitor them during particle manufacturing, three novel aerosol measurement techniques were developed: wide‐angle light scattering (WALS), three‐dimensional laser scattering (3D‐LSS), and differential aerodynamic particle sizing (DAPS). They measure particle shape, aggregate structure, and particle size, i.e., radius of gyration and aerodynamic diameter. The techniques were tested for rod‐like organic pigments and partially sintered SiO2 aggregates, which were produced by two new aerosol generators.
Multiparameter Characterization of Aerosols
Babick, Frank (author) / Hillemann, Lars (author) / Stintz, Michael (author) / Dillenburger, Tim (author) / Pitz, Michael (author) / Hellmann, Albert (author) / Antonyuk, Sergiy (author) / Ripperger, Siegfried (author) / Huber, Franz J. T. (author) / Will, Stefan (author)
Chemie Ingenieur Technik ; 90 ; 923-936
2018-07-01
14 pages
Article (Journal)
Electronic Resource
English
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