首页> 外文期刊>Polycyclic Aromatic Compounds: The Journal of International Society for Polycyclic Aromatic Compounds >Electrochemically Reversible Solubilization of Polycyclic Aromatic Hydrocarbons by Mixed Micelles Composed of Redox-active Cationic Surfactant and Conventional Nonionic Surfactant
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Electrochemically Reversible Solubilization of Polycyclic Aromatic Hydrocarbons by Mixed Micelles Composed of Redox-active Cationic Surfactant and Conventional Nonionic Surfactant

机译:氧化还原活性阳离子表面活性剂和常规非离子表面活性剂组成的混合胶束对多环芳烃的电化学可逆溶解

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Reduplicate utilization of surfactants is a key factor for Surfactant-Enhanced Remediation (SER) technology to reduce its high operation costs. In order to achieve the reuse of surfactants, this study attempted to construct a novel reversible solubilization system for SER. Three typical polycyclic aromatic hydrocarbons (PAHs) pyrene, phenanthrene, and acenaphthene were controllably solubilized and released by the mixed micelles composed of redox-active cationic surfactant (11-Ferrocenylundecyl) trimethylammoniunm bromide (FTMA) and conventional nonionic surfactant Tween80. Solubilization of PAHs is assumed to be controlled by changing the redox states of FTMA. Cyclic voltammograms tests of FTMA showed the oxidation and reduction potential were 0.4570 and 0.4068V, respectively, and the peak currents ratio of FTMA and FTMA(+) was 1.26, verified that FTMA possesses electrochemically reversible property. In FTMA-Tween80 mixed solutions, CMC values demonstrated the nonideal interaction between the two surfactants and the interaction parameters () was -5.5296 when the mass ratio was FTMA:Tween80 = 2:8. Due to the synergistic solubilization effect, the apparent water solubilities of PAHs were significantly enhanced by the mixed surfactant, and they were much higher than those in single surfactant. After oxidation, more than 50% of the PAHs in mixed micelles could be released, the cumulative release efficiency of selected PAHs followed the order of pyrene > pherantherene > acenaphthene. Briefly, such results in this article provide a facile method to meliorate the SER technology.
机译:表面活性剂的重复使用是表面活性剂强化修复(SER)技术降低其高昂运营成本的关键因素。为了实现表面活性剂的再利用,本研究试图构建用于SER的新型可逆增溶系统。三种典型的多环芳烃(PAHs),、菲和通过混合胶束可控地溶解和释放,该胶束由氧化还原活性阳离子表面活性剂(11-二茂铁基十一烷基)三甲基溴化铵(FTMA)和常规非离子表面活性剂Tween80组成。假设PAHs的增溶是通过改变FTMA的氧化还原状态来控制的。 FTMA的循环伏安图测试表明,氧化电位和还原电位分别为0.4570和0.4068V,并且FTMA和FTMA(+)的峰值电流比为1.26,证明FTMA具有电化学可逆性。在FTMA-Tween80混合溶液中,当质量比为FTMA:Tween80 = 2:8时,CMC值表明两种表面活性剂之间的非理想相互作用,且相互作用参数(-)为-5.5296。由于具有协同增溶作用,混合表面活性剂显着提高了PAHs的表观水溶性,远高于单一表面活性剂。氧化后,混合胶束中PAHs的释放量可超过50%,所选PAHs的累积释放效率遵循of>菲>的顺序。简而言之,本文中的此类结果提供了一种简便的方法来改善SER技术。

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