Modular architecture of systems for the regeneration and recirculation of process liquids
Authors
Petrovych Volodymyr Vasylovych

Share
Annotation
Modern industrial sectors that use water in technological processes face significant limitations imposed by traditional water treatment methods. Currently, three main groups of technologies are employed: reagent-based chemical treatment (over 70% of the market), non-reagent treatment methods (less than 20%), and combined technologies (approximately 10%). However, these existing solutions no longer meet contemporary industrial demands, as partial purification or localized improvements in water quality are insufficient for modern production requirements.
Given the inability of established methods to effectively address current challenges, the author-drawing on recent innovative concepts advanced by specialists such as Illia Beda - proposes a comprehensive water-treatment technology. This approach is based on the use of complete, autonomous, and standardized technological modules that ensure scalability, adaptability, and seamless integration into various industrial environments.
Keywords
Authors
Petrovych Volodymyr Vasylovych

Share
References:
United States Patent Application US 2010/0224506 A1
Livshits, David, et al.
Process and Apparatus for Complex Treatment of Liquids
September 9, 2010.
United States Patent Application US 2010/0224497 A1
Livshits, David, et al.
Device and Method for the Extraction of Metals from Liquids
September 9, 2010.
United States Patent Application US 2011/0069579 A1
Livshits, David, et al.
Fluid Mixer with Internal Vortex
March 24, 2011.
United States Patent Application US 2010/0193445 A1
Livshits, David, et al.
Foaming of Liquids
August 5, 2010.
United States Patent Application US 2015/0130091 A1
Livshits, David, et al.
Foaming of Liquids
May 14, 201
United States Patent US 6,139,714
Livshits
Method and Apparatus for Adjusting the pH of a Liquid
October 31, 2000.
United States Patent US 9,144,774
Livshits, David, et al.
Fluid Mixer with Internal Vortex
September 29, 2015.
