As alkali concentrations increase in textile finishing baths, achieving deep penetration becomes more challenging as standard wetting agents often lose their efficacy. CRN WET MIS A is a specially formulated pre-treatment auxiliary renowned for its superior wetting capabilities in high-alkali environments. It ensures rapid and complete penetration within seconds, even for the most challenging woven and knitted fabrics, guaranteeing maximum process reliability.
CRN WET MIS A is specialized in reducing surface tension in high pH environments (in the presence of caustic soda). Unlike conventional wetting agents, it maintains its performance as alkali density increases, and in some systems, it exhibits even more aggressive wetting power.
Rapid Wetting: Facilitates the uniform distribution of the treatment bath into the tightest fabric pores and the very core of the yarn.
Seamless Processing: Completely eliminates the risk of "white spots" or "unwetted areas" in high-alkali continuous ranges such as pad-steam, pad-batch, and mercerization.
The product is not merely a wetting agent but also a powerful scouring auxiliary. It rapidly degrades and removes waxes, pectins, and proteins—natural components of cotton fibers that inhibit absorbency. Its specialized formula ensures that these dissolved impurities remain suspended within the bath, preventing them from re-depositing onto the fabric surface.
Superior Wetting Speed: One of the fastest alkaline wetting agents on the market, allowing for increased production throughput.
High Stability: Does not decompose or contaminate the bath under harsh operating conditions involving high levels of alkali, electrolytes, and hard water.
Exceptional Hydrophilicity: Imparts instantaneous water absorbency to the fabric post-treatment, creating a perfect base for subsequent dyeing.
Foam Management: Provides ease of operation with a controllable low-foam profile, even in highly turbulent systems.
Dyeing Yield: Prepares the fabric in its cleanest and most uniform state, enhancing color depth and brilliance in the following stages.