Integrated water regeneration modules for smart home infrastructure.
Authors
Alisa Khabarova

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The invention relates to integrated technologies for water treatment, purification, regeneration, and preparation for recirculation within the infrastructure of smart homes and smart mobile homes. The proposed technology is based on a set of autonomous modular units that can be combined in various configurations depending on the operating conditions and the required water treatment objectives.
The integrated system comprises an inlet water treatment module, ion-exchange treatment modules, electrochemical reactor modules with metallic and composite electrode cells operating in single-flow and dual upward-flow configurations, mechanical filtration modules, and final sedimentation modules. The inlet and final treatment modules incorporate foam generation systems, sedimentation systems for foam-separated contaminants, oxygen saturation systems, microbubble and nanobubble aeration systems, and non-contact water quality monitoring devices based on electromagnetic resonance spectroscopy.
The ion-exchange module utilizes sectional columns containing encapsulated synthetic, natural, and biological ion-exchange materials and is equipped with pumps, flow sensors, pressure gauges, check valves, and control valves. The electrochemical treatment modules include electrochemical reactors, power supply units, processor-based control systems, and non-contact real-time acidity monitoring sensors, providing efficient treatment of water and aqueous solutions, including radioactive water.
The proposed modular architecture enables flexible integration of individual treatment technologies into a unified multifunctional water regeneration complex. Each module possesses independent technical novelty while simultaneously providing synergistic performance when operating as part of the integrated system. The invention ensures comprehensive purification, regeneration, and preparation of used water for reuse without the application of chemical reagents, improving treatment efficiency, process reliability, environmental safety, and adaptability to modern smart infrastructure.
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Authors
Alisa Khabarova

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