Abstract
The quality of human life consists of many parameters: physical, psychological, level of independence, social life and the environment. The latter, in turn, includes safety, ecology, security, availability and quality of medical care, information, training opportunities, and life. The system of life quality evaluation, combining an objective component (indicators of water and air quality, morbidity) and subjective (the degree of satisfaction of residents with water quality) was developed. “Crowd survey” data block realizes the function of “Open access”. The system of life comfort includes information on people morbidity and the main consumed water and air parameters that affect the satisfaction with natural resources and health. Such system units as «Input Interface» and «Interaction Interface» have been developed as a mobile application. In addition, system includes geographic information system that allows visualizing, analyzing and predicting the state of the object. Thematic maps of spatial pollution of the Taganrog Bay at control points were simulated. The main features of the system are shown and recommendations for its application are offered.
Highlights
The economic and social development of human society takes place in conjunction with the production, use and emission of an ever-increasing number of chemicals [1,2]
The system of assessing the comfort of life of the population can act as an auxiliary tool for assessing the effectiveness of management at the municipal level and determine the social development of the region, which is a balanced development of all spheres of life
The authors plan in the future to add to the system data on the correlation of air quality and morbidity, obtained with the help of volunteers and to finalize the mobile application
Summary
The economic and social development of human society takes place in conjunction with the production, use and emission of an ever-increasing number of chemicals [1,2]. About one hundred thousand chemicals are used every day Their comprehensive monitoring together with a huge number of by-products released by chemical compounds is very difficult to conduct, and sometimes even impossible. The ecosystem and humans constantly interact through complex compounds, only a few pollutants present in the environment have adverse effects on the living organism, causing various diseases, increasing the mortality rate [3,4,5]. Identifying these and many other pollutants is a key to controlling and improving the comfort of people's lives and reducing the risks of adverse impacts on biological sites. When assessing the state of the air environment, one of the main tasks is to quantify the composition of the analyzed air [13,14,15,16]
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