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Simulation of the Physical Characteristics of Dispersed Phase Particles Using the Results of Dynamic Light Scattering

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Abstract

A procedure for the construction of an approximating particle-size distribution function of a dispersed phase using a dynamic light scattering method was proposed. This procedure makes it possible to pass from the experimental spectrum in the particle size–intensity coordinates to theoretical particle size–number of particles and particle size–weight of particles spectra and obtain additional data on the nature of the particle size distribution. The algorithm of the calculation method was presented and illustrated by particular examples.

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Funding

This work was carried out within the framework of a state contract at the Topchiev Institute of Petrochemical Synthesis, Russian Academy of Sciences.

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Correspondence to Kh. M. Kadiev, A. M. Gyul’maliev or M. Kh. Kadieva.

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Translated by V. Makhlyarchuk

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Kadiev, K.M., Gyul’maliev, A.M. & Kadieva, M.K. Simulation of the Physical Characteristics of Dispersed Phase Particles Using the Results of Dynamic Light Scattering. Solid Fuel Chem. 55, 187–193 (2021). https://doi.org/10.3103/S0361521921030071

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  • DOI: https://doi.org/10.3103/S0361521921030071

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