Keywords: modeling, nomogramms, maximum permissible emissions, asphalt plants, technological processes, environmental safety, labor safety
MODELING USING NOMOGRAM MAXIMUM PERMISSIBLE EMISSIONS
UDC 004.94:574
DOI:
The article presents the results of modeling the maximum permissible emissions from production processes at asphalt plants. The aim of the research is to calculate the maximum allowable emissions from process industries in factories. To achieve this goal, a simple and easy-to-use nomogramm method was developed. Studies have shown that the developed method for determining the maximum permissible emissions, based on the use of straight and mesh monograms, can significantly reduce the labor intensity, as well as the cost and time of rationing emissions of pollutants into the atmosphere compared to the existing methods of calculation of maximum permissible emissions in the regulatory literature. The determined values of maximum permissible emissions are necessary for the assessment of the existing environmental situation at asphalt plants, for the development of measures to improve the environment and working conditions at hazardous and harmful industries. Verification of the proposed method was carried out not only by comparing with existing methods of calculation, as well as by comparing the results with the results presented in the finished draft standards of maximum permissible emissions at production facilities. As a result, the calculation of maximum permissible emissions in the projects according to the proposed method gave a deviation of no more than 8% compared with the corresponding data obtained by the method in the regulatory literature.
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Keywords: modeling, nomogramms, maximum permissible emissions, asphalt plants, technological processes, environmental safety, labor safety
For citation: Kuprienko P.S., Manokhin V.A., Sazonova S.A. MODELING USING NOMOGRAM MAXIMUM PERMISSIBLE EMISSIONS. Modeling, Optimization and Information Technology. 2018;6(2). URL: https://moit.vivt.ru/wp-content/uploads/2018/04/KuprienkoSoavtori_2_18_1.pdf DOI: (In Russ).
Published 30.06.2018