СОДЕРЖАНИЕ 30 4. ОТВЕТСТВЕННОЕ УПРАВЛЕНИЕ 31 4.1. Управление устойчивым развитием 34 4.2. Корпоративное управление 37 4.3. Система вознаграждения 38 4.4. Система управления рисками 40 4.5. Обеспечение корпоративной защиты 41 4.6. Предупреждение и противодействие коррупции 43 4.7. Участие в противодействии отмыванию преступных доходов и финансированию терроризма 44 4.8. Служба корпоративного доверия 45 4.9. Информационная открытость 46 4.10. Ответственность за качество продукции 49 4.11. Научно-техническая деятельность 49 4.12. Обеспечение экономической эффективности 5. ЭФФЕКТИВНОЕ ВЗАИМОДЕЙСТВИЕ 55 5.1. Заинтересованные стороны и механизмы взаимодействия 55 5.2. Диалог с сотрудниками 58 5.3. Диалог с акционерами и инвесторами 60 5.4. Диалог с бизнес-партнерами 60 5.5. Диалог с органами власти, населением и некоммерческими организациями 64 5.6. Диалог по вопросам экологии 65
The safe functioning of the transport system mainly depends on the quality of road surfaces. Therefore, improvement of the physical and mechanical characteristics of roads will ensure the effective protection of health and safety of people engaged in this field. Consequently, modification of the physical and mechanical characteristics of road surfaces will ensure safety in the field of transport systems. Bitumen-salt mass was used as a modifier of the road bitumen emulsions and such a mass was obtained by means of destructing the chemical weapons of the organophosphorus class of compounds since they have an effect of surfaceactive substances. Studying of the modified road surface parameters was carried out according to the dispersion parameters and using the method of mathematical design of the experiment. As a result, the positive effect of the bitumen-salt mass on the dispersion distribution of the bitumen phase in the bitumen emulsion was determined. The proposed method of modification of the bitumen emulsions allowed us to improve the operational parameters of the road surfaces, and thus the safety of road transport systems as a whole.
The paper considers the effect of sanitary and hygienic condition of occupational environment, namely the factor of increased microbial contamination, on temporary disability and reduction of labor efficiency. In this regard, it is necessary to improve the methodology and technical support of disinfection methods in order to reduce labor intensity and increase the efficiency of equipment and disinfectants. The developed deflector model serves to reduce the emissions of microorganisms into the atmosphere and improves the environmental situation. The proposed design of the ultrasonic system makes it possible to improve user experience due to the possibility to control the flow rate of the working fluid and preparations. According to the results of the experiment, the disinfection agent based on hydrogen peroxide, silver salt and a furocoumarin solution in ethyl alcohol with the use of the developed ultrasonic atomizer reduced the total microbial contamination by 8 times on average.
This article analyzes the reasons of temporary disability of laborers in Agro Industrial Complex, dealing with microbial content in industrial premises. Development and implementation of equipment for correction of microbial content level results in reduction of general morbidity rate and duration of temporary disability among laborers in Agro Industrial Complex. It will help to increase labor efficiency and decrease labor intensity of production. Biofilm resistance against antibacterial agents is a vital problem during disinfection treatments. Increase in bacteria survival potential and reduction in sensitivity to the substances eliminating them, results in need for increased dosing of the latter decreased efficiency of sanitation. This is a stimulus to develop alternative antibacterial compositions and methods of disinfection treatment. The basic difference of the suggested photodynamic treatment from the disinfection methods with application of antimicrobial preparations is the lack of resistibility to destabilizing oxidant – singlet oxygen. Before disinfection treatment, we determined total microbial air contamination according to the original method, providing a possibility to use air medium sampling of the total volume of indoor area. Experimental results have shown a decrease in total microbial contamination by a factor of 5.5 on average.
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