Clariant Nipacide CDZ is a carbendazim-based dry-film fungicide in powder form. Broad-spectrum antifungal, low water solubility, wide pH stability, designed for coating dry-film mold protection, effectively delaying coating discoloration and degradation.
Broad-spectrum antifungal – Effectively inhibits fungi causing coating mold and degradation
Low-dose high-efficiency – Long-term dry-film protection at low addition level
Wide pH adaptability – Stable at pH 2–10, suitable for various coating formulations
Easy-to-disperse powder – Integrates into coating systems without affecting performance
Cost-effective – Controllable cost, extends coating service life
Water-based architectural coatings
Wood protective coatings
Exterior decorative coatings
Outdoor industrial coatings
All coating systems requiring dry-film mold protection
| Brand | Clariant |
| Product Type | Dry-film fungicide |
| Active components | Carbendazim + Octylisothiazolinone |
| Form | Aqueous dispersion |
| Recommended dosage | 0.5–2% |
| Stability | pH-stable, UV-stable |
| Origin | Germany |
Q1: What is the primary mode of action of Nipacide CDZ?
A: Nipacide CDZ functions as a broad-spectrum fungicide through inhibition of fungal cell wall synthesis and disruption of membrane integrity, delivering reliable protection against common spoilage fungi in water-based industrial systems.
Q2: In which types of industrial formulations is Nipacide CDZ typically used?
A: It is widely applied in water-based coatings, adhesives, construction chemicals, and metalworking fluids—particularly where long-term microbial stability and low-odor performance are required.
Q3: Is Nipacide CDZ compatible with common co-biocides and formulation ingredients?
A: Yes, Nipacide CDZ demonstrates good compatibility with many standard preservatives (e.g., isothiazolinones, benzisothiazolinone) and typical formulation components such as thickeners, surfactants, and pH adjusters—though compatibility testing under actual use conditions is recommended.
Q4: How should Nipacide CDZ be dosed in formulations?
A: Dosage depends on formulation requirements, challenge level, and regulatory context; it is typically used at low concentrations, generally ranging from 0.1% to 2% by weight, with optimal levels determined through efficacy and stability testing.
Q5: Does Nipacide CDZ offer residual antifungal activity after application?
A: Yes, Nipacide CDZ provides persistent protection due to its favorable partitioning behavior and stability in aqueous matrices, helping to prevent recontamination during storage and early service life.
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