Our premium Natural Printing Paste (CAS 9005-38-3) is a high-performance thickening agent specifically engineered for the textile printing industry. Designed to replace traditional sodium alginate, this advanced chemical solution offers superior fluidity and a uniform printing effect, ensuring high-precision color application on cotton, hemp, and other natural fabrics.
By integrating cutting-edge chemical engineering, this printing paste delivers a 10% higher color yield compared to sodium alginate while maintaining exceptional viscosity stability. Whether you are utilizing active printing, dispersion printing, or digital printing processes, our product optimizes production efficiency by reducing dissolution time and eliminating clumping.
Detailed Parameters
| Appearance | Yellow brown particles | CAS Number | 9005-38-3 |
|---|---|---|---|
| Viscosity (1%) | 1400-1600cps (20℃, 20R, Brookfield LV) | Ionic Nature | Anion |
| Packing Specification | 25kg per bag | Validity Period | 12 months |
| Primary Application | Active & Dispersion Printing | Compatible Materials | Cotton, Hemp, Spun Rayon |
| Purity Level | High quality natural grade | Chemical Type | Specialty Printing Thickener |
Key Advantages
Enhanced Color Yield
Achieves a color yield 10% higher than sodium alginate, providing more vivid and saturated print results.
Rapid Dissolution
Dissolves faster than traditional alginates with no clumping, significantly saving beating and preparation time.
High Viscosity Stability
Superior stability prevents significant viscosity drops over 3 months, ensuring consistent production quality.
Uniform Printing Effect
Excellent fluidity ensures a smooth, even spread of paste for professional-grade textile finishes.
Heat Resistance
Maintains viscosity for up to 72 hours in 30℃ water baths, solving common summer color paste stability issues.
Cost-Efficiency
Lower paste formation ratios required to achieve similar hand-feel, reducing overall raw material expenditure.
Product Gallery
Management Platforms
Automated Production
World-class automatic production lines ensuring batch-to-batch consistency and purity.
Quality Control
Rigorous testing of viscosity and ionic properties to meet global textile standards.
Technical R&D
A dedicated team of researchers optimizing chemical formulas for specific textile needs.
Supply Chain Management
Integrated manufacture and trade capabilities for streamlined global shipping.
Expert Support
Professional technicians available to assist with equipment process prescriptions.
Diverse Portfolio
One-stop sourcing for CMC, HPMC, MHEC, PVA, and RDP-VAE polymer powders.
Investment Return Comparison
| Performance Metric | Sodium Alginate (Formula A) | S86-12+ Printing Paste (Formula B) |
|---|---|---|
| Paste Formation Ratio | 2.2% Standard | 1.8% (Reduced Consumption) |
| Color Yield Improvement | Standard Base | +10% higher DL value |
| Viscosity @ 24h (30℃) | 13,300 cps | 19,180 cps |
| Viscosity @ 72h (30℃) | 10,440 cps | 17,880 cps |
| Preparation Time | Slower / Clumping risk | Rapid dissolution / Smooth |
Frequently Asked Questions
Our printing paste offers a better cost-performance ratio because it requires a lower paste formation ratio (1.8% vs 2.2%) and provides a higher color yield, reducing the amount of raw material needed per batch.
It is highly suitable for cotton, hemp, and spun rayon materials, supporting active printing, dispersion printing, and digital printing applications.
High temperatures often cause traditional thickeners to lose viscosity rapidly. Our product maintains stable viscosity for up to 72 hours at 30℃, preventing production downtime and inconsistent print quality.
No, one of the key advantages of our natural printing paste is that it dissolves faster than sodium alginate without clumping, which significantly reduces the beating time required.
The product has a validity period of 12 months when stored under proper conditions. We recommend keeping it in a cool, dry place in its original 25kg packaging.
Yes, we strongly recommend that users conduct a small-scale sample test before full production to adjust equipment process prescriptions according to their actual production conditions.