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Effect of hydrophobe structure on performance of alcohol ethoxylates

机译:疏水物结构对乙醇乙氧基化物性能的影响

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Alcohol ethoxylates are versatile surfactants because both the hydrophobic and the hydrophilic moities can be varied readily to change performance.Many studies have focused on the effect of changes in the average length of the hydrophobe and the nature of the hydrophile.Less frequently studied,however,has been the effect on performance of hydrophobes structure,yet this can be varied easily by changing the alcohol feedstock used to make the alcohol ethoxylate.This study compares the performance of alcohol ethoxylates derived from oleochemical alcohol and oxo-alcohols derived from kerosene,butylene,or coal by the Fischer-Tropsch process.Two aspects of hydrophobe structure were found to be important for performance of alcohol ethoxylates:the overall linearity of the parent alcohol and the degree of substitution at the C2 carbon.As the linearity of the parent alcohol increases,the critical micelle concentration (CMC) decreases and the surface tension at the CMC increases.Increasing substitution at the C2 carbon increases the amount of unethoxylated alcohol in the ethoxylate but decreases the inverse cloud point temperature,wetting time,and foam stability in the absence of soil.
机译:醇乙氧基化物是通用的表面活性剂,因为疏水性和亲水性分子均可轻易改变以改变性能。许多研究集中于疏水基平均长度的变化和亲水基团性质的影响。对疏水结构的性能产生了影响,但是可以通过改变用于制备乙氧基化醇的醇原料来轻松改变。本研究比较了从油性化学醇衍生的醇乙氧基化物和从煤油,丁烯,发现疏水物结构的两个方面对醇乙氧基化物的性能很重要:母体醇的整体线性和C2碳的取代度。随着母体醇的线性增加,临界胶束浓度(CMC)降低,而CMC处的表面张力增加。在没有土壤的情况下,在C2碳上的使用会增加乙氧基化物中未乙氧基化醇的含量,但会降低逆浊点温度,润湿时间和泡沫稳定性。

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