Preparation method of antibacterial cellulose fibers
A cellulose fiber and cellulose technology, applied in the direction of single-component cellulose rayon, fiber chemical characteristics, spinning solution preparation, etc., can solve the long-term, usually 2 to 48 hours, even up to 120 hours, the limit The application and development of functional fiber antibacterial fiber, the influence of spinneret pressure resistance and drafting, etc., to achieve the effects of shortened dissolution time, excellent antibacterial function, and reduced dissolution temperature
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Embodiment 1
[0045] 1. Preparation of 1,4-bis[1-(3-methylimidazolium)]butyl dichloride:
[0046] Under nitrogen protection at 80°C, slowly drop 1.2mol N-methylimidazole into 1mol 1,4-dichlorobutane, after the dropwise addition, reflux for 72 hours to complete the reaction, and cool the reaction solution to room temperature to obtain The product was washed with ether to remove unreacted raw materials, and a white solid was obtained, which was bis-1,4-bis[1-(3-methylimidazole)]butyl dichloride (HPLC purity was 98.8%, yield 88 %).
[0047] Two, the preparation of 1,4-bis[1-(3-methylimidazole)]butyl diperchlorate:
[0048] Dissolve 1 mol of 1,4-bis[1-(3-methylimidazolium)]butyl dichloride and 1.2 mol of lithium perchlorate in 1L of water, then stir and react at 80°C for 36 hours, then cool to room temperature, Stirring was continued at room temperature for 12 hours, the reaction solution was dispersed into an equal volume of chloroform, separated, the chloroform phase was washed with water u...
Embodiment 2
[0066] The only difference between this example and Example 1 is: 0.5 mass parts of silicon oxide (particle diameter is about 100nm), 0.09 mass parts of medical zinc oxide and 9.41 mass parts of cotton pulp (cellulose content is 99%, polymerized degree is 600) after mixing evenly, add 100 parts by mass, 85wt% in the ionic liquid aqueous solution, and the remaining contents are all the same as described in Example 1.
[0067] After testing, the antibacterial cellulose fiber prepared in this example has a breaking strength of about 3.4 cN / dtex when the monofilament fineness is 2.5 dtex; and the experiment shows that: under the same conditions, using 85 wt% of 1-butylene Base-3-methylimidazolium chloride, 1,4-bis[1-(3-methylimidazolium)]butyl dichloride or 1,4-bis[1-(3-methylimidazolium)]butyl When a single ionic liquid aqueous solution based on diperchlorate dissolves zinc oxide and cotton pulp, it needs to be stirred at 110-130°C for 3-5 hours to obtain a stable and uniform spi...
Embodiment 3
[0070] The difference between this embodiment and Example 1 is only: 0.5 mass parts of silicon oxide (particle diameter is about 100nm), 0.015 mass parts of nano silver (particle diameter is about 100nm) and 9.485 mass parts of cotton pulp (cellulose The content is 99%, the degree of polymerization is 600), and after mixing evenly, add 100 parts by mass and 85 wt% of the ionic liquid aqueous solution, and the rest of the content is the same as that described in Example 1.
[0071] After testing, the antibacterial cellulose fiber prepared in this example has a breaking strength of about 3.0 cN / dtex when the monofilament fineness is 2.5 dtex; and the experiment shows that under the same conditions, using 85 wt% of 1-butyl Base-3-methylimidazolium chloride, 1,4-bis[1-(3-methylimidazolium)]butyl dichloride or 1,4-bis[1-(3-methylimidazolium)]butyl When a single ionic liquid aqueous solution based on diperchlorate dissolves nano-silver and cotton pulp, it needs to be stirred at 110-...
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