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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Effect of thermal regeneration of spent activated carbon on volatile organic compound adsorption performances
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Effect of thermal regeneration of spent activated carbon on volatile organic compound adsorption performances

机译:废活性炭的热再生对挥发性有机化合物吸附性能的影响

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Thermal swing adsorption (TSA) is widely used as a process in industry for gas purification and air treatment. This study enlightens the effects of thermal regeneration of an activated carbon spent with volatile organic compounds (VOCs) on its adsorption capacities. Ketone group VOCs (acetone and methyl ethyl ketone (MEK)) were selected for this study as they are sensitive to oxidation reactions at low temperature, and for this reason, are responsible for many reported fire accidents on industrial units. Cyclic adsorption-desorption experiments were performed using a thermo-gravimetric analyzer (TGA). First cycle adsorption capacity of acetone and MEK at 20 ℃ was 5.06 mol/kg and 6.41 mol/kg, respectively. The regeneration was performed with air at temperature ranging from 80 ℃ to 160 ℃. Multiple cycles were successively repeated to assess the variations in the material adsorption performances. For acetone, it was found that after first regeneration cycle conducted at 80 ℃, the adsorption capacity was restored at nearly 95%, and remained unchanged after 8 successive cycles. For MEK, continuous degradation of the adsorption capacities was observed, which was more drastic when the temperature was low and reached 3.4 mol/kg after 8 cycles. This could be related to the partial decomposition of the chemisorbed MEK molecules. Effect of air humidity was furthermore examined and a protocol was developed to guarantee good regeneration efficiency of MEK spent activated carbon at a moderate temperature.
机译:热变吸附(TSA)在工业中被广泛用作气体净化和空气处理的过程。这项研究启发了挥发性有机化合物(VOC)消耗的活性炭的热再生对其吸附能力的影响。选择本研究的酮类VOC(丙酮和甲乙酮(MEK))是因为它们对低温下的氧化反应敏感,因此导致许多工业单位发生火灾。使用热重分析仪(TGA)进行循环吸附-解吸实验。丙酮和MEK在20℃的第一循环吸附容量分别为5.06 mol / kg和6.41 mol / kg。用空气在80℃至160℃的温度范围内进行再生。连续重复多个循环以评估材料吸附性能的变化。对于丙酮,发现在80℃进行第一个再生循环后,吸附容量恢复到接近95%,并在连续8个循环后保持不变。对于MEK,观察到吸附能力的连续下降,当温度低时更剧烈,并且在8个循环后达到3.4mol / kg。这可能与化学吸附的MEK分子的部分分解有关。此外,还研究了空气湿度的影响,并制定了协议以确保在中等温度下MEK废活性炭具有良好的再生效率。

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