Sets the performance ceiling for high flux, high rejection, and chemical stability.
From monomer selection to cross-linked network optimization, defining preferential water pathways and ion rejection barriers at molecular scale.
Built on proprietary membrane chemistry design, manufacturing process, and molecular additives to raise flux, cut energy use, and strengthen corrosion resistance while maintaining high salt rejection.
From monomer selection to cross-linked network optimization, defining preferential water pathways and ion rejection barriers at molecular scale.
Refined through engineering iterations to address interfacial polymerization control, membrane uniformity, and batch stability.
Membrane-sheet flux increases by 75% versus a leading international brand under comparable conditions.
Unit energy consumption drops 15–25%, improving long-term desalination project economics.
Standard 8040 industrial elements support drop-in replacement with a typical delivery window of 1–3 months.
| Metric | Leading international brand | BioHtoO |
|---|---|---|
| Membrane-sheet flux | Baseline | +75% |
| NaCl rejection | Flagship level | Comparable |
| Unit energy consumption | Baseline | -15–25% |
| Lifecycle cost | / | -20–50% overall |