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Suspended Liquid of Nano TiO2 and SiO2-Ag for antibacterial finishing

机译:纳米TiO2和SiO2-Ag悬浮液的抗菌修饰

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With special performance of nanometer materials, nanometer antibacterial agents are better than usual antibacterial agents. Nano TiO2 (Anatase) and nano SiO2-Ag are just cases in point. Because the nanopowder does not dissolve in water and lacks affinity to the natural fabric, it is necessary to confect the nano-powder into relatively stable suspended liquid and then the nano-powder is transferred into the fabric by pad-roll. Therefore, the effects of dispersant on dispersion of nano TiO2 and SiO2-Ag particles were investigated respectively in this paper. The sedimentation height and the size distribution of the dispersed particles in aqueous solution were employed to characterize the particles dispersion. The experimental results show that sodium hexametaphosphate is efficient dispersant for TiO2 and SiO2-Ag particles in aqueous solution. The zeta potential of the particles in aqueous solution was measured to analyse the dispersion mechanism. Optimal formula for the suspended liquid of the mixed nano-powder TiO2 and SiO2-Ag was obtained by the orthogonal experiments on the ratio of the mixture, the dosage of dispersant and PH value. The antibacterial rate of the finished fabric is shown as follows: the anti-E.coli rate is 100% and the anti-MSSA rate is 96.1% in 5 min.
机译:纳米抗菌剂具有纳米材料的特殊性能,比常规抗菌剂要好。纳米TiO2(锐钛矿)和纳米SiO2-Ag就是恰当的例子。因为纳米粉不溶于水并且对天然织物缺乏亲和力,所以有必要将纳米粉制成相对稳定的悬浮液,然后通过轧辊将纳米粉转移到织物中。因此,本文分别研究了分散剂对纳米TiO2和SiO2-Ag颗粒分散的影响。利用沉淀高度和分散颗粒在水溶液中的尺寸分布来表征颗粒分散体。实验结果表明,六偏磷酸钠是水溶液中TiO2和SiO2-Ag颗粒的有效分散剂。测量颗粒在水溶液中的ζ电位,以分析分散机理。通过混合比,分散剂用量和PH值的正交试验,得出了纳米粉体TiO2和SiO2-Ag混合液的最佳配方。成品织物的抗菌率如下:5分钟内的抗大肠杆菌率是100%,抗MSSA率是96.1%。

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