首页> 外文期刊>Journal of Surfactants and Detergents >Ethoxy Carboxylate Extended Surfactant: Surface Charge of Surfactant-Modified Alumina, Adsolubilization and Solubilization of Phenylethanol and Styrene
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Ethoxy Carboxylate Extended Surfactant: Surface Charge of Surfactant-Modified Alumina, Adsolubilization and Solubilization of Phenylethanol and Styrene

机译:乙氧基羧酸扩展表面活性剂:表面活性剂改性氧化铝的表面电荷,苯乙醇和苯乙烯的增溶和增溶

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摘要

Adsolubilization of contaminants by surfactant-modified material is an important phenomenon for surfactant-based environmental technologies. Recently, extended surfactants have been shown to enhance the adsolubilization capacity of organic solutes. In this study, two extended surfactants (ethoxy propoxylated carboxylate extended surfactant—C16P04E05C and propoxylate extended sulfate surfactant—C16P04S) were selected for modifying positively charged alumina surfaces with the aim of enhancing adsolubilization of organic solutes with varying degrees of polarity (phenanthrene, styrene, and phenylethanol). The nature of the charged surface as a function of extended surfactant adsorption was evaluated through the zeta potential measurements. The results showed that at maximum bilayer coverage, the zeta potential of the alumina surface remained constant and was oppositely charged (negative) to the unmodified alumina (positive). Zeta potential measurements showed that the adsorbed bilayer of carboxylate-based extended surfactant produced more negatively charged surface. Surfactant desorption results showed that the surfactant-modified surface retained their negatively charge, albeit reduced, indicating that partial desorption occurred but not to the point that the positively charged alumina surface was realized. The adsolubilization results suggest a benefit of the ethoxy groups in adsolubilizing the polar phenylethanol in the palisade layer.
机译:表面活性剂改性材料对污染物的增溶是基于表面活性剂的环境技术的重要现象。最近,已显示出扩展的表面活性剂可增强有机溶质的去脂能力。在本研究中,选择了两种扩展表面活性剂(乙氧基丙氧基化羧酸盐扩展表面活性剂—C16P04E05C和丙氧基化硫酸盐扩展表面活性剂—C16P04S)来修饰带正电的氧化铝表面,目的是增强极性不同的有机溶质(菲,苯乙烯,和苯乙醇)。通过ζ电势测量来评估带电表面的性质与表面活性剂扩展吸附的关系。结果表明,在最大双层覆盖率下,氧化铝表面的zeta电位保持恒定,并且与未改性的氧化铝相反(带负电)(正)。 Zeta电势测量表明,羧酸盐基扩展表面活性剂的吸附双层产生了更多带负电荷的表面。表面活性剂的解吸结果表明,尽管表面活性剂改性的表面减少了,但仍保留了其负电荷,表明发生了部分解吸,但未达到实现带正电的氧化铝表面的程度。脱脂结果表明乙氧基在使栅栏层中的极性苯基乙醇增溶方面具有优势。

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