PROZYME DSA

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PROZYME DSA is a high temperature stable alpha amylase enzyme designed especially for complete removal of sizing components like starch from cotton. Under appropriate conditions, PROZYME DSA converts starch into dextrins for easy removal from the fabric.
Characteristics
Benefits
Provides excellent desizing effect in after bleach process like dyeing, printing etc.

PROZYME DSA is act as powerful bio-catalyst to react with amylose and amylopectin present starch and make them into water soluble and able to remove from fabric.

Suitable for pre-cleaning of cotton, rayon and blended fiber/fabrics

PROZYME DSA carefully target certain molecules, causing no harm to the fiber because of their very precious function there is very low chances of fiber damage.

Excellent stability in pH between 5 to 8

It can be used in very wide range of pH, stable up 5-8 pH.

Good stability to hard water

PROZYME DSA is s a metalloprotein and can be stabilized by addition of calcium ions to the level of 200 – 400 PPM during the sizing removal. This helps to stabilize process at temperatures between 30⁰C –100⁰C.

Use of NaCl (1000 – 2000 PPM) during de-sizing process also helps for better penetration into the garments / fabrics and improved thermos stability.

Eco-friendly product

It is non-toxic, reducing risk for worker who handling this, no produce hazardous by-product during desizing.

Not toxic or harmful to aquatic organisms

Eco-friendly and biodegradable, APEO, NPEO Free product.

Properties:

CHEMICAL CONSTITUENTS

Bacterial amylase.

CHEMICAL NATURE

Not Applicable.

COLOUR

Brown clear liquid.

pH. (as such)

7 +/- 1

DENSITY
Approx. 1.0 g/cm3
SOLUBILITY

Soluble in water.

COMPATIBILITY

Compatible with anionic and non-ionic products.

STORAGE STABILITY

PROZYME DSA is stable for 1 year when properly stored in closed containers at 20°C. The product is sensitive to temperatures below 0°C and above 40°C.

ECOLOGY AND TOXICITY​

The usual hygiene and safety rules for handling chemicals should be observed in storage, handling and use. The product must not be swallowed.

Application:

  • Dosage of PROZYME DSA shall vary from process to process optimum dosage for winch, jigger, pad batch, pad roll, and pit storage etc. Should be decided by trial and error method. Our general recommendation is between 0.5% o.w.f. to 1.0% o.w.f.
  • PROZYME DSA is active between pH 5.5 – 10.0. We recommend operating at a pH of 5.5 –8.0.
  • PROZYME DSA is active between temperatures of 70 – 110°C. We recommend operating temperature of 80-100°C. Optimum temperature is 90°C.
This information corresponds to the present state of our knowledge and is intended as a general description of our products and their possible applications. Adinath makes no warranties, express or implied, as to the information’s accuracy, adequacy, sufficiency or freedom from defect and assumes no liability in connection with any use of this information. Any user of this product is responsible for determining the suitability of Adinath products for its particular application. * Nothing included in this information waives any of Adinath general terms and conditions of sale, which control unless it agrees otherwise in writing. Any existing intellectual/industrial property rights must be observed. Due to possible changes in our products and applicable national and international regulations and laws, the status of our products could change.
FAQS

Cutting-Edge Fashion & Textile Solutions

PROZYME DSA is a high-temperature stable alpha-amylase enzyme designed for the complete removal of starch size from cotton and blended fabrics. It converts starch into dextrins, which are easily removed, ensuring excellent desizing results.

PROZYME DSA carefully targets starch molecules without harming the fabric fibers. Its precise action minimizes the risk of fiber damage, making it ideal for pre-cleaning cotton, rayon, and blended fabrics.

Yes, PROZYME DSA offers good stability in hard water and can be stabilized with calcium ions. This ensures consistent performance in desizing processes, even in challenging water conditions.

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