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Ultrasound-assisted regeneration of granular activated carbon saturated by 4-chlorophenol in batch-loop reactor

机译:间歇回路反应器中超声辅助再生4-氯苯酚饱和的颗粒状活性炭

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摘要

The present work reports an investigation for examining the use of low-frequency ultrasound (20 kHz) as an inventive technique for the regeneration of granular activated carbon (GAC) saturated by 4-chlorophenol (4-CP) in batch-loop reactor. The effects of experimental conditions such as the amount of adsorbent (0.05-0.4 g), intensity of ultrasound irradiation (20-35%), temperature (25-55 degrees C), flow rate (3-30 mL/min) and total volume of regenerating solution (200-300 mL), NaOH (0.01-0.1 N), ethyl alcohol (10-60%) and mixture of NaOH, and ethanol on the regeneration process were examined. The obtained results show that the amount of 4-CP desorption decreased with increasing the amount of adsorbent and intensity of ultrasonic irradiation. The desorption gradually increased with the increase in temperature and flow rate and total volume of regenerating solution. Using NaOH or/and ethyl alcohol as regenerating solutions causes an improvement in the desorption of 4-CP from GAC. The regeneration of spent GAC by ultrasonic irradiation is due to the generation of physical and thermal effects of ultrasound. It can be concluded that desorption by ultrasound can be an alternative technique to classical methods used for the regeneration of exhausted GAC.
机译:本工作报告了一项调查,以检查使用低频超声(20 kHz)作为在间歇回路反应器中再生被4-氯苯酚(4-CP)饱和的颗粒状活性炭(GAC)的发明技术。实验条件的影响,例如吸附剂的量(0.05-0.4 g),超声辐射的强度(20-35%),温度(25-55摄氏度),流速(3-30 mL / min)和总量在再生过程中,检查了再生溶液的体积(200-300 mL),NaOH(0.01-0.1 N),乙醇(10-60%)以及NaOH和乙醇的混合物。所得结果表明,4-CP解吸量随吸附剂量和超声辐射强度的增加而降低。随着温度,流速和再生溶液总体积的增加,解吸逐渐增加。使用NaOH或/和乙醇作为再生溶液可改善4-CP从GAC的解吸。超声波辐照产生的废GAC的再生归因于超声波的物理和热效应的产生。可以得出结论,超声解吸可以是用于耗尽GAC再生的经典方法的替代技术。

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