Department of Civil Engineering, Indian Institute of Technology Madras, Chennai, India.
J Environ Sci Health A Tox Hazard Subst Environ Eng. 2009 Dec;44(14):1565-73. doi: 10.1080/10934520903263538.
The effect of biosurfactants on the solubility of tetrachloroethylene (PCE) and trichloroethylene (TCE) was studied in batch experiments pertaining to their use for solubilization and mobilization of such contaminants in surfactant enhanced aquifer remediation. Biosurfactants, rhamnolipid and surfactin used in solubility studies were synthesized in our laboratory by Pseudomonas aeruginosa (MTCC 2297) and Bacillus subtilis (MTCC 2423), respectively. The efficiency of the biosurfactants in solubilizing the chlorinated solvents was compared to that of synthetic surfactants. The Weight Solubilization Ratio (WSR) values for solubilization of PCE and TCE by biosurfactants were very high compared to the values obtained for synthetic surfactants. Surfactin proved to be a better surfactant over rhamnolipid. The WSR of surfactin on solubilization of PCE and TCE were 3.83 and 12.5, respectively, whereas the values obtained for rhamnolipid were 2.06 and 8.36. The solubility of the chlorinated solvents by biosurfactants was considerably affected by the changes in pH. The aqueous solubility of PCE and TCE increased tremendously with decrease in pH. The solubility of biosurfactants was observed to decrease with the pH, favoring partitioning of surfactants into the chlorinated solvents in significant amounts at lower pH. The excessive accumulation of biosurfactants at the interface facilitated interfacial tension reductions resulting in higher solubility of the chlorinated solvents at pH less than 7.
生物表面活性剂对四氯乙烯(PCE)和三氯乙烯(TCE)溶解度的影响在批处理实验中进行了研究,这些实验涉及到它们在表面活性剂增强的含水层修复中用于溶解和迁移此类污染物的用途。在溶解度研究中使用的生物表面活性剂鼠李糖脂和表面活性剂是由铜绿假单胞菌(MTCC 2297)和枯草芽孢杆菌(MTCC 2423)在我们的实验室中合成的。生物表面活性剂在溶解氯化溶剂方面的效率与合成表面活性剂进行了比较。与合成表面活性剂相比,生物表面活性剂对 PCE 和 TCE 的重量增溶比(WSR)值非常高。表面活性剂比鼠李糖脂更适合作为表面活性剂。表面活性剂对 PCE 和 TCE 的增溶 WSR 值分别为 3.83 和 12.5,而鼠李糖脂的值分别为 2.06 和 8.36。生物表面活性剂对氯化溶剂的溶解度受到 pH 值变化的极大影响。PCE 和 TCE 的水溶解度随着 pH 值的降低而显著增加。生物表面活性剂的溶解度随着 pH 值的降低而降低,有利于在较低 pH 值下将表面活性剂大量分配到氯化溶剂中。生物表面活性剂在界面上的过度积累促进了界面张力的降低,从而导致在 pH 值小于 7 时氯化溶剂的溶解度更高。