Method for preparing spinnable cellulosic fibers based on hydrogen bond depolymerization principle
A cellulose fiber and cellulose technology, applied in the field of textile fiber materials, can solve the problems of small dissolved cellulose, complicated preparation process, easy pollution, etc., and achieve the effects of shortened reaction time, simple operation process and high production efficiency
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Embodiment 1
[0017] Mix betaine and glycerol at a molar ratio of 1:3, stir at 95°C for 2.5 hours to make 20g of transparent solution, then add 1g of bagasse dissolving pulp (DP=200~1200), 100°C, 90r / min Stir under the conditions for 15 minutes, and then move into a cell pulverizer with a power of 1000W and a temperature of 2°C for 25 minutes to obtain spinnable cellulose fibers with a yield of 93.0%. The spinnable cellulose fiber has relatively consistent size, high regularity, less impurities and good spinning formability.
Embodiment 2
[0019] Mix betaine and glycerol at a molar ratio of 1:3, stir at 95°C for 2.5 hours to make a 54g transparent solution, then add 2g of rice straw dissolving pulp (DP>1200), stir at 100°C and 90r / min 20 minutes, and then moved into a cell pulverizer with a power of 1000W and a temperature of 5°C for 15 minutes to obtain spinnable cellulose fibers with a yield of 89.5%. The spinnable cellulose fiber has relatively consistent size, high regularity, less impurities and good spinning formability.
Embodiment 3
[0021] Mix betaine and glycerol at a molar ratio of 1:3, stir at 95°C for 2.5 hours, and make 45g of a transparent solution, then add 1.5g of mulberry skin dissolving slurry (DP=100~1000), 100°C, 90r / Stir for 25 minutes under the condition of 1 min, then transfer to a cell pulverizer, and react for 20 min under the conditions of power of 1000W and temperature of 10°C to obtain spinnable cellulose fibers with a yield of 91.0%. The spinnable cellulose fiber has relatively consistent size, high regularity, less impurities and good spinning formability.
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