By Baico Biotech 丨 Textile Enzyme 丨 Coated Granular Enzyme 丨 Baico Biotech-Arpina
Textile finishing consists of multiple processes such as bio-polishing, bleaching and dyeing, and different processes demand distinct reaction conditions.Therefore, it is necessary to precisely control reaction conditions. It is critical to ensure the quality of textiles.Nevertheless, sequential long-time treatment of individual processes limits the production capacity of textile manufacturers.Faced with the bottlenecks in the textile industry, the development of a one-bath process for simultaneous bio-polishing and dyeing helps save production time and boost productivity.
To address the above challenges, NEF®2100 is a neutral cellulase formulated as coated granular enzyme with coating technology. Baico Biotech is textile Enzyme and household detergent enzyme manufacturer in China. Coating technology enables textile enzyme cellulase NEF®2100 to possess excellent stability during storageand application.This bio-enzyme is widely applied to woven and knitted textiles for bio-polishing and dyeing processes.It allows bio-polishing and dyeing to be carried out in one bath.Add NEF®2100 during the textile finishing process. After 10 minutes of reaction, the dyestuff can be added. Treat at 30–60°C for 60 minutes to complete bio-polishing and dyeing of fabrics simultaneously.In the conventional process, bio-polishing takes 60 minutes followed by another 60 minutes for dyeing, with a total processing time of 2 hours. By adopting neutral cellulase NEF®2100, the whole process only requires 70 minutes, saving 50 minutes of processing time.It effectively boosts production capacity for bio-polishing and dyeing of cotton fabrics and knitted fabrics. More bio-polishing finishing of cotton fibers can be achieved within the same production cycle.
One-bath bio-polishing and dyeing can be achieved with neutral cellulase NEF®2100. This process not only greatly shortens production time and simplifies working procedures, but effectively reduces equipment wear and labor costs. The reaction proceeds under mild conditions, which can well preserve the tensile strength of cellulosicfibers.Furthermore, the short-flow process significantly cuts the consumption of water, electricity and steam as well as wastewater discharge. It complies with the green and low-carbon development trend of the textile industry. This technology helps manufacturers improve productivity, optimize product quality and realize energy conservation & emission reduction simultaneously. It provides a reliable technical solution for efficient and eco-friendly textile wet processing.

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