CHELATING AGENT:
A chelating agent in textiles is a chemical compound that binds to metal ions, preventing them from interfering with textile processing steps such as bleaching, dyeing and finishing. This ensures better color consistency and quality by deactivating metal impurities that could otherwise cause uneven dyeing or fabric damage.
WHY ADILON NT:
ADILON NT is a highly effective iron chelating and dispersing agent primarily used in de-sizing and bleaching baths. It is especially well-suited for bast fibers & other cellulosic fibers during the scouring step to prevent the formation of oxi-cellulose. By binding to iron ions, ADILON NT prevents their interference in the processing steps, ensuring better fabric quality and consistency. This makes it an essential component in maintaining the integrity and appearance of textiles during treatment.
BENEFITS:
- Versatile product- can be used in both exhaust as well as continuous process.
- High iron bonding power. – prevents pin hole damage to the fabric.
- Excellent protector for bast fiber during scouring.
- Bio-degradable product.
- Free from APEO & NPEO.
FAQS
Cutting-Edge Fashion & Textile Solutions
ADILON NT allows for the replacement of sodium hypochlorite bleaching by protonic treatment, minimizing catalytic damage to cotton and stabilizing the peroxide bath. This innovation not only improves bleaching efficiency but also reduces the environmental impact.
ADILON NT is a multifunctional product that acts as a sequestering agent, acid donor, and demineralizer. It can be effectively used across a wide pH range in both continuous and discontinuous processes, making it adaptable to various textile applications.
ADILON NT is most suitable for use in Continuous bleaching on CBR machines for cotton and blends. It helps in protonic treatment and prevents pin hole damage in cotton fabrics. It is used along with Hydrogen peroxide to prevent catalytic damage to cotton fabric.
ADILON NT is biodegradable and eco-friendly, offering an effective solution for textile processing while minimizing environmental impact. Its unique properties ensure high performance without compromising sustainability.