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Efficient flame retardant of mercerized cotton through cross-linking with citric acid and ZnO nanoparticles optimized by RSM models

机译:通过RSM模型优化的柠檬酸和ZnO纳米粒子的交联作用,使丝光棉有效阻燃

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摘要

This research attempts to resolve high flammability of mercerized cotton (MC) through cross-linking with sodium hypophosphite (SHP) catalyst and citric acid (CA) cross-linking agent and then post-treated with ZnO nanoparticles. However, concurrent optimization of flame retardant and cross-linking treatment of MC fabrics with SHP/CA/ZnO nanocomposite were not been reported. ZnO nanoparticles were stabilized on the surface of MC fabric using CA cross-linking agents. Appropriate models were obtained based on Design of Expert software in order to create optimum physical properties. The roles of SHP, CA, and nanoZnO concentrations were optimized in flame retardant and cross-linking properties of MC fabric using response surface methodology. Also, absorbance and transmission spectraanalyses (200-400nm)and scanning electron microscopy were employed to confirm ZnO nanoparticles on the MC fabrics. The results revealed the significant and synergism influence of SHP, CA, and nanoZnO in enhancing the flame retardant property of cross-linked MC fabrics.
机译:这项研究试图通过与次磷酸钠(SHP)催化剂和柠檬酸(CA)交联剂交联,然后用ZnO纳米粒子进行后处理来解决丝光棉(MC)的高易燃性。然而,尚未报道同时使用SHP / CA / ZnO纳米复合材料优化阻燃剂和对MC织物进行交联处理。使用CA交联剂将ZnO纳米颗粒稳定在MC织物的表面上。基于Design of Expert软件获得了合适的模型,以创建最佳的物理性能。使用响应表面方法优化了SHP,CA和nanoZnO浓度在MC织物的阻燃和交联特性中的作用。另外,通过吸收和透射光谱分析(200-400nm)和扫描电子显微镜来确认MC织物上的ZnO纳米颗粒。结果表明,SHP,CA和nanoZnO在增强交联MC织物的阻燃性能方面具有显着的协同作用。

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