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Removal of mercaptans from a gas stream using continuous adsorption-regeneration

机译:使用连续吸附再生从气流中去除硫醇

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The removal of the mercaptan, 1-methyl-1-propanethiol, from aqueous solutions using a non-porous, electrically conducting carbon-based adsorbent (Nyex 1000) was investigated. The adsorption process was found to be rapid (equilibrium capacity achieved within 5 minutes) with low adsorptive capacity (of the order of 0.4 mg g ~(-1)) when compared with activated carbon. Electrochemical regeneration of the Nyex 1000 in a simple divided electrochemical cell within a sequential batch treatment unit restored 100% of the adsorbent's adsorptive capacity using treatment times as low as 20 minutes by passing a current of 0.5 A. The sorptive characteristics of a Nyex-water slurry were also modelled and investigated both in a bubble column and in a continuous adsorption-regeneration treatment system. It was demonstrated that the continuous removal-destruction system could achieve a step reduction in challenge gas concentration of approximately 75% for a period of 35 minutes with a current of 5 Amps. This was attributed to mass transfer enhanced by a combination of adsorption and chemical reaction with free chlorine species generated in the electrochemical process.
机译:研究了使用无孔导电碳基吸附剂(Nyex 1000)从水溶液中去除硫醇1-甲基-1-丙硫醇的方法。与活性炭相比,吸附过程迅速(吸附能力在5分钟内达到平衡),吸附能力低(约0.4 mg g〜(-1))。 Nyex 1000在顺序分批处理装置内的简单分隔式电化学池中的电化学再生,通过0.5 A的电流,使用低至20分钟的处理时间即可恢复100%的吸附剂吸附能力。Nyex-水的吸附特性在鼓泡塔和连续吸附-再生处理系统中对浆液进行建模和研究。事实证明,在电流为5安培的情况下,连续去除-销毁系统可以在35分钟的时间内将挑战性气体浓度逐步降低约75%。这归因于通过吸附和化学反应与电化学过程中产生的游离氯物种的结合而促进了传质。

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