Description
Zinc oxide-based photocatalytic materials used for air and water purification applications, offering alternative photocatalytic properties for environmental remediation and building material applications
Market positioning
Secondary player in photocatalysts market
Target audience
Construction industry, environmental technology companies, air and water treatment system manufacturers
Use cases
Air and water purification applications, environmental remediation, building material applications for pollutant breakdown
Company information
Company size
Medium-sized industrial materials company
Revenue
$50-200M annually
Scale
Regional to global distribution
Number of users
Industrial clients across construction and environmental sectors
Features
Alternative to titanium dioxide, Environmental pollutant breakdown, Photocatalytic air purification, Sustainable purification technology, Water treatment capabilities
Pricing
Pricing modelB2B industrial pricing
Starting priceCustom industrial pricing
Billing periodContract-based, typically annual or project-based
Rating
Not publicly rated
Pros and cons
Based on: (AI summary)
Pros
- Alternative photocatalytic option
- Environmental purification benefits
- Multiple application potential
- Sustainable technology
Cons
- High production complexity
- Manufacturing cost challenges
- Limited market penetration compared to TiO2
- Scalability issues
Feature Comparison
Top features across 20 competitors (most common first)
| Feature | PozzoCEM Vi… | Green Wall … | Titanium Di… | Photocataly… | Geosyntheti… | TiO2-based … | Titanium Di… | Calcium sil… | 3D Construc… | PPG Green B… | Clean Energ… | Holcim Gree… | Photocataly… | Polymeric a… | Zinc Oxide … | FMC Photoca… | ADAMA Photo… | Tin Oxide P… | Zinc Oxide … | Bayer Photo… |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Self-cleaning properties | ||||||||||||||||||||
| Air purification capabilities | ||||||||||||||||||||
| Photocatalytic air purification | ||||||||||||||||||||
| 100% Portland cement replacement | ||||||||||||||||||||
| 92% fewer emissions than traditional cement | ||||||||||||||||||||
| Compatible with 3D printing technology | ||||||||||||||||||||
| Decreases construction waste | ||||||||||||||||||||
| Enables rapid building construction | ||||||||||||||||||||
| Increases worker safety | ||||||||||||||||||||
| Near zero-carbon formulation | ||||||||||||||||||||
| Rapid setting time (2-3 minutes) | ||||||||||||||||||||
| Reduces construction costs | ||||||||||||||||||||
| Aesthetic enhancement | ||||||||||||||||||||
| Biodiversity support | ||||||||||||||||||||
| Living wall system | ||||||||||||||||||||
| Natural air purification | ||||||||||||||||||||
| NO2 reduction (15%) | ||||||||||||||||||||
| PM10 reduction (23%) | ||||||||||||||||||||
| Air pollutant decomposition (NOx | ||||||||||||||||||||
| VOCs) |