首页> 外文期刊>International Journal of Environmental Science and Technology >Corona discharge plasma-based degradation of simulated residual linear alkylbenzene sulphonate and dodecyl benzene sulfonate surfactants
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Corona discharge plasma-based degradation of simulated residual linear alkylbenzene sulphonate and dodecyl benzene sulfonate surfactants

机译:基于电晕放电血浆模拟残余直链烷基苯磺酸盐和十二烷基苯磺酸盐表面活性剂的降解

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摘要

Synthetic surfactants are used in a wide range of products ranging from household cleaning detergents to pesticide formulations. Due to their widespread use, residual surfactants are often released in large quantities into the environment, especially via wastewater and can act as potential toxicants. The present study explored the applicability of a non-thermal plasma, namely corona discharge plasma jet (CDPJ), for the degradation of residual surfactants so as to minimize their harmful effects to aquatic life. The plasma was generated using 20 kV DC power supply, with different input currents (1.00, 1.25 and 1.50 A) and at various electrode-to-sample distances (20, 25 and 30 mm). For degradation treatments, simulated residual surfactants (sodium dodecylbenzene sulfonate [DBS] and sodium linear alkylbenzene sulfonate [LAS]) and DBS-containing dishwashing detergents dispersed on slide glasses were exposed to CDPJ for predetermined periods of time (0-120 min). Results indicated that under optimal treatment conditions of 1.5 A current and 20 mm electrode-to-sample distance, the tested surfactants and surfactants in detergents were maximally degraded to about 57% following the plasma treatment for 120 min. Modeling of degradation kinetics indicated that Weibull distribution was the best-fit model, and decimal degradation times (delta) were calculated for different treatment conditions. The pure surfactants were degraded to a greater extent than surfactants in detergents.
机译:合成表面活性剂可用于各种产品,从家用清洁洗涤剂到农药配方。由于它们广泛使用,残留的表面活性剂通常以大量释放到环境中,特别是通过废水,可以充当潜在的毒物。本研究探讨了非热等离子体,即电晕放电等离子体射流(CDPJ)的适用性,用于残留表面活性剂的降解,以最大限度地减少对水生寿命的有害影响。使用20kV DC电源产生等离子体,不同的输入电流(1.00,1.25和1.50a)和各种电极 - 样品距离(20,25和30mm)。对于降解处理,模拟残余表面活性剂(十二烷基苯磺酸钠[DBS]和直链烷基苯磺酸钠[LAS])和分散在滑动玻璃上的含DBS的洗涤剂洗涤剂暴露于CDPJ预定的时间(0-120分钟)。结果表明,在1.5电流和20mm电极 - 样品距离的最佳处理条件下,在等离子体处理后,洗涤剂中的测试表面活性剂和洗涤剂表面活性剂最大化至约57%。降解动力学的建模表明,Weibull分布是最适合的模型,对不同的治疗条件计算小数降解时间(Delta)。纯表面活性剂在比洗涤剂中的表面活性剂更大程度地降解。

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