Abstract

The application of physicochemical analytical control for the determination of ecological compatibility of techno-natural systems as a factor mark of the state of material flows in the application of non-reagent water preparation in electromagnetic fields for heat-energy objects of the housing and communal sector and industrial enterprises with low production capacity is substantiated. Heat evaporation and hydrocarbons were selected as test gradients for the heating systems. In both cases, there was no excess emission limit value.

Highlights

  • A generalized indicator - criterion of environmental friendliness of non-reagent water preparation in the electromagnetic fields (EMF) of heat supply systems is defined, which characterizes the ecology of the results of the operation of the TEO systems, and evaluates the completeness and efficiency of the operation of the proposed nanotechnology

  • The definition of such an indicator is due to specific relationships in complex heterogeneous inorganic systems, namely, that in them there are intermolecular interactions regardless of the characteristics of micro particles, which reflect their physical and chemical properties

  • Our studies have shown that volumes of evaporation heat decrease compared with the use of tap water by 20 % [5]

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Summary

Introduction

The work was carried out within the framework of the tasks of the Law of Ukraine on the main principles (strategies) of the state policy for the period up to 2030 (No 8328, dated 28.03.19) In accordance with these tasks (tactical intentions), expanded by us, the framework of ecological and economic control for heat-energy objects of the housing utility sector and industrial objects of the construction industry. It is the efficiency of the spatial management of thermal energy objects systems, on the basis of the interconnections and the interaction of the components of material flows, have allowed to expand the database of information control of technogenic-natural systems (the motive structure of passive monitoring) and thereby ensure the relevance of the topic

Materials and methods
Results and discussion
Conclusions

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