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Effects of surfactants on chlorobenzene absorption on pyrite surface

机译:表面活性剂对黄铁矿表面氯苯吸收的影响

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Recently, both surfactant extraction of chlorinated compounds from contaminated soils and chemical reduction of chlorinated compounds by pyrite have had received a lot of attention. The reaction of the natural mineral pyrite was found as a surface controlling process which strongly depends on absorption of contaminants on the surface. Surfactants were not only aggregated into micelle which increase solubility of hydrophobic compounds but also tend to absorb on the solid surface. This study investigated effects of different kinds of surfactants on absorption of chlorobenzene on pyrite surface in order to identify coupling potential of surfactant application and remediation by pyrite. Surfactants used including non-ionic, anionic and cationic which were Polyoxyethylene (23) Lauryl Ether (Brij35), Sodium Dodecyl Sulfate (SDS) and Cetyl TrimethylAirmioniurn Bromide (CTAB) respectively were investigated with a wide range of surfactant concentration up to 4 times of each critical micelle concentration (CMC). Chlorobenzene was chosen as a representative compound. The enhancement or competition effects of surfactants on absorption were discussed.
机译:最近,含有污染土壤的氯化化合物的表面活性剂和氯化物化合物的氯化化合物的均均得到了很多关注。发现天然矿物质胶质矿石的反应作为表面控制过程,该方法强烈取决于表面上的污染物的吸收。表面活性剂不仅聚集到胶束中,其增加了疏水化合物的溶解度,而且倾向于吸收在固体表面上。本研究研究了不同种类表面活性剂对氯苯对黄铁矿表面吸收的影响,以鉴定表面活性剂施用和硫铁矿修复的偶联电位。使用包括非离子,阴离子和阳离子的表面活性剂,其是聚氧乙烯(23)月桂基醚(Brij35),十二烷基硫酸钠(SDS)和十六烷基三甲基丙烷溴(CTAB),具有宽范围的表面活性剂浓度,可达4次每个临界胶束浓度(CMC)。选择氯苯作为代表性化合物。讨论了表面活性剂对吸收的增强或竞争效应。

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