Published 4 issues per year
ISSN Print: 2572-4258
ISSN Online: 2572-4266
Indexed in
MULTILEVEL SIMULATION OF THE PROCESSES OF NANOAEROSOL FORMATION.PART 3. NUMERICAL INVESTIGATION OF NANOAEROSOLS FOR FEEDING PLANTS FROM THE GAS PHASE
ABSTRACT
The multilevel modeling investigations of nanobiotechnology involving nanoparticles for the pro-duction of ecologically pure vegetables in greenhouses are presented. The modeling is performed with the use of the methods of quantum mechanics, molecular dynamics, and mesodynamics. The regularities of the formation, movement, integration, and disintegration of nanoparticles' systems in a gas medium depending on its thermodynamic conditions are presented The effect of the composition, shape, and size of nanoparticles on the processes of their movement in the gas medium (Brownian movement, agglomeration, sedimentation) is studied.
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Alikin, V. N., Vakhrouchev, A. V, Golubchikov, V. B., Lipanov, A. M., and Serebrennikov, S. Y. , Development and Investigation of the Aerosol Nanotechnology.
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Golubchikov, V. B., Sibiryakov, S. V., Levin, D. G., and Alikin, V. N. , The regulated gas medium for pre-seeding processing seeds of vegetables.
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Vakhrouchev, A. V. and Golubchikov, V. B. , Numerical investigation of the dynamics of nanoparticle systems in biological processes of plant nutrition.
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. Vakhrouchev, A. V. and Golubchikov, V. B. , Numerical investigation of the dynamics of nanoparticle systems in biological processes of plant nutrition.
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Vakhrouchev, A. V. and Golubchikov, V. B. , The regulated gas medium with a set of nanoparticles generated by the solid fuel composition as a method for producing eco-vegetables.
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Vakhrushev, A. A., Golubchikov, V. B., and Givotkov, A. V., Multilevel simulation of the processes of nanoaerosol formation, Part 1, Theory foundations.