首页> 外文期刊>Journal of Surfactants and Detergents >Reversible Solubilization of Typical Polycyclic Aromatic Hydrocarbons (PAH) by a Gas Switchable Surfactant
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Reversible Solubilization of Typical Polycyclic Aromatic Hydrocarbons (PAH) by a Gas Switchable Surfactant

机译:气体可切换表面活性剂可逆溶解典型的多环芳烃(PAH)

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Surfactant-enhanced remediation (SER) is one of the most effective remediation methods for polycyclic aromatic hydrocarbons (PAH) contaminated soils. However, mass deployment of SER has been restricted due to the shortage of the separation, recycle technology of the surfactant and its operation costs. This research mainly studied the reversibility of 2-n-lauryl-1,1,3,3-tetramethyl guanidine (DTMG) surfactant and its influence on reversible solubilization of typical PAH. Experimental results showed that the reversibility of the DTMG surfactant is excellent. The critical micellar concentration (CMC), surface tension and pH of DTMG in CO2/N-2 conditions undergo reversible changes promptly. DTMG center dot CO2 shows a strong solubilization capacity for PAH; the apparent solubilities of the selected PAH pyrene, phenanthrene and anthracene in 4 mmol/L of DTMG center dot CO2 solution were about 32.4, 17.1 and 14.6 times higher than in water, respectively. The corresponding molar solubilization ratios were 5.4 x 10(-3), 2.80 x 10(-2) and 1.1 x 10(-3), much higher than those with DTMG. More than 50 % of the PAH in surfactant solutions could be released through gas control at each surfactant concentration, and improved release efficiency was achieved at low surfactant concentrations. In brief, such results in this work introduce a facile method to meliorate the SER technology.
机译:表面活性剂增强修复(SER)是针对多环芳烃(PAH)污染土壤的最有效修复方法之一。然而,由于缺乏表面活性剂的分离,再循环技术及其操作成本,SER的大规模部署受到限制。这项研究主要研究2-n-月桂基-1,1,3,3-四甲基胍(DTMG)表面活性剂的可逆性及其对典型PAH可逆增溶的影响。实验结果表明,DTMG表面活性剂的可逆性极好。在CO2 / N-2条件下,DTMG的临界胶束浓度(CMC),表面张力和pH值迅速发生可逆变化。 DTMG中心点CO2对PAH具有很强的增溶能力。所选PAH ene,菲和蒽在4 mmol / L DTMG中心点CO2溶液中的表观溶解度分别是在水中的约32.4、17.1和14.6倍。相应的摩尔溶解比为5.4 x 10(-3),2.80 x 10(-2)和1.1 x 10(-3),远高于DTMG。通过在每种表面活性剂浓度下进行气体控制,可以释放出表面活性剂溶液中超过50%的PAH,并且在低表面活性剂浓度下可以提高释放效率。简而言之,这项工作中的这些结果引入了一种简便的方法来改善SER技术。

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