High chroma and excellent lightfastness in demanding applications.
Outstanding thermal stability suitable for high-temperature processing.
Good dispersibility in both solvent-based and water-based systems.
Excellent resistance to migration and blooming in plastic compounds.
Compliant with major regulatory frameworks including REACH and RoHS.
Polyolefin (PP, PE) injection molding and extrusion.
Engineering plastics such as ABS, PS, and PC blends.
Automotive interior and exterior trim components.
General-purpose industrial coatings and coil coatings.
Flexible and rigid PVC formulations requiring heat stability.
| Chemical Type | Azo pigment (disazo) |
| Product Form | Free-flowing powder |
| Appearance | Yellow to orange-yellow powder |
| Primary Applications | Plastics, coatings, inks |
| Key Features | High tinctorial strength, low dusting |
| Benefits | Consistent color reproduction, low viscosity impact in dispersions |
| Regulatory Compliance | REACH registered, non-GMO, no SVHC above threshold |
Q1: What is the primary application field for Novoperm Yellow H10G 01?
A: This high-performance organic pigment is primarily used in industrial coatings, automotive refinish systems, and select plastic applications where excellent lightfastness, thermal stability, and clean yellow hue are required.
Q2: Is Novoperm Yellow H10G 01 suitable for food-contact plastics or inks?
A: No — this grade is not certified for food-contact applications. It is formulated for non-regulated industrial uses; customers requiring food-safe pigments must consult Clariant’s portfolio of approved, compliant alternatives.
Q3: How does this pigment perform under high-temperature processing conditions?
A: Novoperm Yellow H10G 01 exhibits good thermal stability and is generally suitable for processing temperatures up to approximately 280 °C, making it appropriate for many engineering thermoplastics and high-bake coating systems.
Q4: What dispersion characteristics should be expected in solvent-based systems?
A: The pigment demonstrates good wettability and dispersibility in common aromatic and aliphatic solvents when processed with standard dispersing aids and equipment; optimal dispersion typically requires medium-shear mixing and stabilization with appropriate resins or surfactants.
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E-mail: wangxingqiang@ericwchem.com
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