
Fullerene production management system used for creation of hydrated solutions
Author(s) -
А. Н. Гаврилов,
Nataliya Sukhanova,
A. E. Emelyanov,
А. В. Иванов
Publication year - 2021
Publication title -
iop conference series. earth and environmental science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.179
H-Index - 26
eISSN - 1755-1307
pISSN - 1755-1315
DOI - 10.1088/1755-1315/640/6/062010
Subject(s) - fullerene , process (computing) , process engineering , computer science , graphite , production (economics) , raw material , process control , evaporation , nanotechnology , materials science , chemistry , engineering , physics , organic chemistry , economics , composite material , macroeconomics , operating system , thermodynamics
The use of hydrated solutions of fullerene C 60 in the food industry is considered. The features of the synthesis of fullerenes C 60 by the method of plasma evaporation of graphite raw materials are presented. The structure of a complex mathematical model is proposed which allows one to relate the process of the formation of carbon nanostructures (CNS) in a plasma with the synthesis conditions, which allows one to determine the process conducting conditions with the maximum yield of the final product. An automated information management system (AIMS) for the production of fullerenes has been developed, which allows, based by numerical calculations using a complex mathematical model, to determine rational technological parameters for the graphite raw materials used and the synthesis method. The architecture of an automated information system for managingthe synthesis of carbon nanostructures is presented. The description of the interaction modules and subsystems of the control system is given. The scheme of interaction of elements of an automatedinformation management system in the process of collecting and processing information is presented. The developed automated information management system allows you to control the process of synthesis of carbon nanostructures in automatic or manual mode, monitor technological parameters in real time, calculate control actions and stabilize parameters, process the received data and present it to the user in the form of tabular or graphical information.