
The use of electrolysis processes in reagent-free water treatment: removal of hydrogen sulfur, organic iron, synthetic surface-active substances
Author(s) -
Vladimir Shtepa,
Nataliia Zaiets,
D. Alekseevskiy
Publication year - 2021
Publication title -
energetika ì avtomatika
Language(s) - English
Resource type - Journals
ISSN - 2223-0858
DOI - 10.31548/energiya2021.02.052
Subject(s) - reagent , aqueous solution , electrolysis , chemistry , pollutant , water treatment , waste management , process engineering , organic chemistry , engineering , electrode , electrolyte
The use of electrotechnical equipment refers to reagent-free methods and makes it possible to simplify the automation schemes for facilities for removing pollutants from aqueous solutions. The article substantiates the approaches and structural diagrams of a reagent-free water purification unit based on the use of electrolysis processes. During the research, the processes of oxidation of pollutants were analyzed when a block of electrochemical action on aqueous solutions was used during processing. A diaphragm cell with an inactive membrane volume of 3.5 liters was used to implement the appropriate reagent-free method for removing pollutants from aqueous solutions. The solution of scientific and practical problems is shown: removal of hydrogen sulfide from water from a well before feeding it to the technological lines of a dairy plant; purification of waste water from an enterprise for the production of gelatinous products from organic iron and related pollutants; reduction of waste water pollutants of a cosmetology enterprise, with a focus on destructive effects on synthetic surfactants. Based on the analysis of the results and treatment modes of three aqueous solutions, the structure of the block of reagent-free electrolysis treatment of aqueous solutions is substantiated. As a result of experimental studies, the prospects of electrical equipment have been confirmed. The reagent-free method will simplify the automation schemes for facilities for removing pollutants from aqueous solutions - accordingly, increase the reliability of such computer-integrated solutions. Further research should be directed to the substantiation, creation and parameterization of mathematical models of combined electrotechnological water treatment complexes. Key words: environmental safety, electrotechnological complex, waste water, reagent-free method, electrolysis processes