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作 者:胡学一 谭杰 方云 李俊国 孙洋 李华山 HU Xue-yi;TAN Jie;FANG Yun;LI Jun-guo;SUN Yang;LI Hua-shan(Key Laboratory of Synthetic and Biological Colloids(Ministry of Education),School of Chemical and Material Engineering,Jiangnan University,Wuxi,Jiangsu 214122,China;Jiangsu Qingting Washing Products Co.,Ltd.,Yancheng,Jiangsu 224555,China;Nanjing Huashi New Material Co.,Ltd.,Nanjing,Jiangsu 210044,China)
机构地区:[1]江南大学化学与材料工程学院合成与生物胶体教育部重点实验室,江苏无锡214122 [2]江苏清婷洗涤品有限公司,江苏盐城224555 [3]南京华狮新材料有限公司,江苏南京210044
出 处:《日用化学工业》2018年第9期500-504,510,共6页China Surfactant Detergent & Cosmetics
基 金:国家重点研发计划资助项目(2017YFB0308900)
摘 要:将本实验室合成的棕榈仁油酸-N-甲基单乙醇酰胺(PNMEA)与市售棕榈仁油酸二乙醇酰胺(PDEA)及棕榈仁油酸单乙醇酰胺(PMEA)进行增稠/稳泡性的比较研究。比较了PNMEA、PDEA和PMEA影响醇醚硫酸钠为主表面活性剂的模拟沐浴露配方的流型、触变性、弹性模量和黏性模量等。研究结果表明:PNMEA自身的表观黏度较低且黏度温敏性较小;用PNMEA、PDEA和PMEA增稠的3种模拟沐浴露均为假塑型非牛顿流体,触变性较弱,在中低角频率和高角频率时分别表现出黏性流体和弹性流体特征,且起泡和稳泡性能相当;PNMEA的增稠效果优于PDEA而与PMEA相当,同时被增稠体系的黏度温敏性比PMEA小,因此PNMEA的增稠性能总体最优秀。综合安全性、增稠性和稳泡性评价结果,PNMEA具有替代PDEA和PMEA成为烷醇酰胺类增稠/稳泡剂主要品种的优势。A comparative study was conducted among a lab -made palm kernel acid N- methyl monoethanolamide (PNMEA) and two commercial counterparts derived from diethanolamine (PDEA) and monoethanolamine (PMEA) on their properties as thickeners and foam boosters. The effects of PNMEA, PDEA and PMEA on the properties ( including the flow pattern, thixotropy, elastic modulus and viscous modulus, etc ) of a model shower gel were studied, in which sodium laureth -3 sulfate was used as the key component of the formula. The experimental results show that the apparent viscosity of PNMEA itself is lower and less temperature sensitive than that of PDEA;the model shower gels thickened by the three alkanolamides are all pseudoplastie non - Newtonian fluids and their thixotropies are very weak, and they behave like viscous fluid and elastic fluid at lower and higher shear frequencies, respectively;the three alkanolamides have similar foam - boosting and foam - stabilizing properties for the model shower gel. The thickening effect of PNMEA is superior to that of PDEA similar to that of PMEA, but the apparent viscosity of the model shower gel thickened by PNMEA is less temperature sensitive than by PMEA. Therefore PNMEA is overall the best thickener among the three alkanolamides. Based on the comprehensive evaluation of safety, thickening property and foam - stabilizing property, PNMEA has advantage over PDEA and PMEA to become the dominant member in alkanolamides.
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