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Hydroxyl Nanobubble RO Pretreatment Systems

At the core of Hydroxyl technology is a patent-pending hydrodynamic cavitation reactor engineered specifically for industrial reverse osmosis pretreatment applications.

The Hydroxyl reactor utilizes a highly engineered internal flow geometry designed to generate controlled hydrodynamic cavitation, nanobubbles and advanced oxidative treatment conditions directly within flowing water streams.

This process enables the formation of nanobubbles and highly active treatment conditions within an exceptionally compact and industrially practical inline platform. 

What Sets Hydroxyl Apart?

  • Compact reactor architecture designed for rapid integration into existing RO pretreatment systems

  • No external gas feed systems or consumable treatment media required

  • Minimal maintenance requirements due to simplified, no-moving-part reactor design

  • Industrial-grade stainless steel construction available in 304 and 316 configurations

  • Materials selected for compatibility with industrial and potable water treatment environments

  • Engineered for continuous operation in demanding industrial water treatment applications

  • Backed by long-term equipment support and performance-focused deployment philosophy

  • Hydroxyl cavitation systems can be specified with NSF/ANSI 61 and NSF/ANSI 372 compliant wetted components for potable water and high-purity industrial RO applications

  • Hydroxyl systems can be supplied as complete skid-mounted packages with properly specified pumps or integrated directly into existing RO infrastructure

Typical Industrial Configuration

Hydroxyl Diagram (May 2026) (2).png

Example configuration: 1,200 GPM low-pressure-drop RO pretreatment system for a large bottled water facility

Pilot / Validation Process

KPIs Tracked

CIP frequency, differential pressure, permeate flow, rejection percentage, feed/permeate TDS, cartridge filter changeouts, carbon tower performance, ATP/HPC if available, membrane replacement interval, chemical usage, and uptime

Validation Pathway

Baseline period → installation → 30/60/90 day monitoring → six-month performance review → ROI calculation

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