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Synthesis of Cationic Waterborne Polyurethanes from Waste Frying Oil as Antibacterial Film Coatings

机译:废油油阳离子水性聚氨酯的合成作为抗菌膜涂层

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Cationic waterborne polyurethane (CWPU) was synthesized from waste frying oil and utilized as antibacterial film coatings. Waste oil-based monoglyceride was synthesized by the alcoholysis reaction of waste oil with glycerol, while CWPUs were prepared by esterification with methylenediphenyl 4,4′-diisocyanate (MDI) and bis(2-hydroxyethyl)dimethyl ammonium chloride (BHMAC) as an internal emulsifier. The effect of internal emulsifier contents on the chemical structures and properties of the obtained polyurethanes was studied. Bactericidal activity of the obtained polyurethanes toward Staphylococcus aureus (S. aureus) and Escherichia coli (E. coli) was investigated using the time kill assay. CWPUs were successfully synthesized as confirmed by proton nuclear magnetic resonance spectroscopy (1H-NMR) and Fourier transform infrared spectroscopy (FT-IR). Effects of the internal emulsifier on particle size of CWPUs and mechanical properties of the resulting polyurethane films were investigated and measured by transmission electron microscopy (TEM). Particle size diameter of CWPUs ranged from 13.38 to 28.75?nm. The resulting polyurethane films were very pliable, with moderate adhesion and hardness. All films showed good resistance to water and diluted acid but poor resistance to dilute alkali. Obtained CWPUs provided excellent antibacterial activity, with efficiency increasing with increasing amount of BHMAC. Interestingly, antibacterial ability against S. aureus was more rapid than that against E. coli under similar conditions. Results offered an alternative utilization of waste frying oil as a sustainable raw material for the preparation of value-added polymers in the chemical industry.
机译:阳离子水性聚氨酯(CWPU)由废油脂合成,用作抗菌薄膜涂层。废油基甘油酯由废油与甘油的醇解反应合成,而CWPU通过酯化用亚甲基苯基4,4'-二异氰酸酯(MDI)和BIS(2-羟基乙基)二甲基氯化铵(BHMAC)制备。乳化剂。研究了内部乳化剂含量对所得聚氨酯的化学结构和性质的影响。使用时间杀死测定研究所得聚氨酯对金黄色葡萄球菌(S. aureus)和大肠杆菌(大肠杆菌)的杀菌活性。通过质子核磁共振谱(1H-NMR)和傅里叶变换红外光谱(FT-IR)确认,CWPU已成功合成。通过透射电子显微镜(TEM)研究了内部乳化剂对CWPU粒径和所得聚氨酯膜的力学性能的影响。 CWPU的粒度直径从13.38到28.75?nm。所得的聚氨酯膜非常柔韧,具有中等的粘附性和硬度。所有薄膜均显示出良好的水和稀释的酸,但抗稀碱的耐受性差。获得的CWPU提供了优异的抗菌活性,效率随着BHMAC的增加而增加。有趣的是,在类似条件下,对抗金黄色葡萄球菌的抗菌能力比对大肠杆菌的抗菌能力更快。结果提供了废物油炸油作为可持续原料的替代利用,用于制备化学工业中增值聚合物。

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