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Desorption of 4-chlorophenol from spent granular activated carbon in continuous flow ultrasonic reactor

机译:在连续流超声反应器中从废粒状活性炭中解吸4-氯苯酚

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The purpose of this work was to explore the application of low frequency ultrasound for the desorption of4-chlorophenol (4-CP) from saturated granular activated carbon (GAC) in a continuous flow ultrasonic reactor. The effects of operating parameters such as the amount of adsorbent, intensity of ultrasound irradiation, temperature, flow rate of desorbing solution, NaOH, ethyl alcohol, and mixture of NaOH and ethyl alcohol on the desorption process were investigated. The obtained results show that the desorption decreased with increasing the amount of adsorbent and intensity of ultrasound irradiation. The amount of 4-CP desorption gradually increased with the increase in temperature and flow rate of desorbing solution. Using NaOH or/and ethyl alcohol as desorbing solutions causes an enhancement of the desorption. Desorption was improved with increasing the concentration of NaOH and ethyl alcohol in the desorbing solution. Future studies should innovate the ultrasound-assisted desorption process in a pilot-scale test that applies this desorption procedure to a GAC adsorber used in organic compounds removal.
机译:这项工作的目的是探索低频超声在连续流超声反应器中从饱和粒状活性炭(GAC)解吸4-氯苯酚(4-CP)的应用。研究了吸附量,超声辐射强度,温度,脱附溶液的流量,NaOH,乙醇,NaOH与乙醇的混合物等操作参数对脱附过程的影响。所得结果表明,解吸量随吸附剂数量和超声辐射强度的增加而降低。 4-CP脱附量随温度和脱附溶液流速的增加而逐渐增加。使用NaOH或/和乙醇作为解吸溶液引起解吸的增强。随着解吸溶液中NaOH和乙醇浓度的增加,解吸得到改善。未来的研究应在中试规模的试验中创新超声波辅助的解吸工艺,该解吸工艺应运用于用于去除有机化合物的GAC吸附器。

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