REDUCTION OF OCCUPATIONAL RISKS FOR THE HEALTH OF WORKERS AND IMPROVEMENT OF ECOLOGICAL SAFETY OF THE ENVIRONMENT DURING CLEANING OF INDUSTRIAL EMISSIONS OF METALLURGICAL ENTERPRISES

A. Petryshchev, S. Semyriahyn, O. Smirnov, Yu.O. Smirnov
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Abstract

Purpose: prevention of occupational risks and reduction of the negative impact on the health of workers of industrial flue gases, along with the improvement of environmental safety thanks to mathematical modeling regarding the rationalization of technological indicators of sulfur removal at production enterprises. Design / methodology / approach: the use of regression analysis is implemented as the main research method. Conclusions: a multifactorial mathematical model of the dependence of the degree of reduction of the content of sulfur dioxide in gaseous products on the technological parameters of flue gas filtration was built using industrial data. This makes it possible to rationalize the technological parameters of production with further regulation of the sulfur dioxide purification process to increase its efficiency. Achieving a reduction in flue gas pollution with sulfur dioxide contributes to reducing the harmful effects on the health of workers, preventing occupational risks, and increasing the level of environmental safety. Limitations / implications of the research: the interrelationship of desulfurization production parameters was investigated in certain intervals according to the features of the technological process, which determines the corresponding limitations of the use of the constructed mathematical model. Practical consequences: the interrelationship of technological indicators of industrial production is determined, which allows adjusting the value of the degree of purification of flue gases from sulfur dioxide when changing the technological parameters of filtration with the establishment of the most favorable conditions. The obtained results can be used to improve the production process of enterprises whose activities are accompanied by gaseous emissions: metallurgical plants, thermal power plants, etc. Originality / value: a multifactorial mathematical model of the dependence of the degree of purification of flue gases from sulfur dioxide on the technological parameters of the industrial process was built. The obtained results were presented in the form of a multivariate regression equation. On the basis of the obtained dependence, for a better visual perception, graphs were constructed in the form of surfaces, respectively, for some of the studied technological parameters.
减少对工人健康的职业风险,改善冶金企业工业排放清理过程中的环境生态安全
目的:通过对生产企业脱硫技术指标进行合理化的数学建模,预防职业风险,减少工业烟气对工人健康的负面影响,同时改善环境安全。设计/方法论/方法:采用回归分析作为主要的研究方法。结论:利用工业数据,建立了气体产物中二氧化硫含量降低程度与烟气过滤工艺参数关系的多因子数学模型。通过对二氧化硫净化工艺的进一步规范,使生产工艺参数合理化,提高生产效率。减少二氧化硫造成的烟道气污染有助于减少对工人健康的有害影响,防止职业风险,并提高环境安全水平。研究的局限性/意义:根据工艺过程的特点,在一定的间隔内研究脱硫生产参数的相互关系,这决定了所构建的数学模型使用的相应局限性。实际效果:确定了工业生产技术指标之间的相互关系,从而可以在改变过滤技术参数时调整二氧化硫烟气净化程度的值,并建立最有利的条件。所得结果可用于改善有气体排放的企业的生产过程,如冶金厂、火电厂等。独创性/价值:建立了二氧化硫烟气净化程度对工业过程技术参数依赖性的多因素数学模型。所得结果以多元回归方程的形式表示。在获得依赖性的基础上,为了获得更好的视觉感受,将所研究的一些工艺参数分别以曲面的形式构建图形。
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