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Solubilization and degradation of perchloroethylene (PCE) in cationic and nonionic surfactant solutions
作者姓名:Sivaram Harendr  Cumaraswamy Vipulanandan
作者单位:[1]Department of Energy, National Energy Technology Laboratory, 1450 Queens Avenue SW, Albany, OR 97321, USA. [2]Civil and Environmental Engineering, University of Houston, N107 Engineering Bldg. 1, Houston, TX 77204, USA
基金项目:This study was supported by the Center for Innovative Grouting Materials and Technology (CIGMAT) at the University of Houston with funding from the Texas Hazardous Waste Research Center and Texas Higher Education Coordinating Board (THECB). The contents do not necessarily reflect the views and policies of the funding agencies.
摘    要:

关 键 词:非离子型表面活性剂  阳离子表面活性剂  四氯乙烯  PCE  表面活性剂溶液  退化  增溶  十六烷基三甲基溴化铵
收稿时间:2010/10/5 0:00:00
修稿时间:2011/2/16 0:00:00

Solubilization and degradation of perchloroethylene (PCE) in cationic and nonionic surfactant solutions
Sivaram Harendr,Cumaraswamy Vipulanandan.Solubilization and degradation of perchloroethylene (PCE) in cationic and nonionic surfactant solutions[J].Journal of Environmental Sciences,2011,23(8):1240-1248.
Authors:Sivaram Harendra and Cumaraswamy Vipulanandan
Institution:1. Department of Energy, National Energy Technology Laboratory, 1450 Queens Avenue SW,, Albany, OR 97321, USA.
2. Civil and Environmental Engineering, University of Houston, N107 Engineering Bldg. 1, Houston, TX 77204, USA
Abstract:Solubilization of perchloroethylene (PCE) in a nonionic (Triton X-100) and a cationic (cetyltrimethylammonium bromide (CTAB)) surfactant solutions and the degradation of surfactant solubilized PCE using fine to nanosize Fe and bi-metallic Fe-Ni particles were investigated. Micelle partition coefficients (Km) and molar solubility ratio (MSR) for PCE in 10 g/L of surfactant solutions have been quantified and the solubility of PCE (100 mg/L in water) in the surfactant solutions increased by about ten fold. Of the two surfactants studied, Triton X-100 solubilized the higher amount of PCE per gram of surfactant. To degrade solubilized PCE, both iron and bimetallic Fe-Ni particles were used in continuously stirred batch reactors. The iron and bi-metallic particles were synthesized using the solution method and the particles were characterized using the SEM, EDS, TEM and XRD. The PCE solubilized up to 500 mg/L in both surfactant solutions were totally degraded at various rates by 200 g/L of bi-metallic Fe-Ni particles in less than 20 hr, which is the highest concentration of PCE degraded in the shortest time compared to data in the literature. The degradations of PCE solubilized in surfactant solutions were represented by nonlinear kinetic relationships which depended on the type of surfactant used for solubilizing the PCE.
Keywords:Fe-Ni particles  perchloroethylene (PCE)  solubilization  degradation
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