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Removal of volatile organic compounds by heterogeneous ozonation on microporous synthetic alumina silicate

机译:在微孔合成硅酸铝上通过非均相臭氧化去除挥发性有机化合物

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A hybrid process combining adsorption and ozonation was examined as an alternative treatment for odorous volatile organic compounds (VOCs). Methyl ethyl ketone (MEK) was chosen to study the influence of operating parameters. Two synthetic aluminosilicates (faujasite-Y and ZSM-5) were tested for adsorption and reactivity with ozone. The adsorption equilibrium measurement on both adsorbents showed that adsorption performance depends on temperature but is not sensitive to relative humidity, due to the hydrophobic properties of the materials. Adsorbed VOCs were oxidized at low temperature when ozonated flow was sent to the reactor. Regeneration of the fixed bed was achieved at the same time, releasing mainly CO _2 and H _2O. Intermediates of oxidation, such as 2,3-butanedione and acetic acid, were identified, leading to incomplete mineralization. The influence of concentration and humidity are discussed. Four successive cycles were tested: after the first adsorption/ozonation cycle, the adsorption efficiency was not affected during subsequent cycles. These results show that the same sample of adsorbent can be used in the treatment process for a long time. Ozonation regeneration is a promising process for VOC removal.
机译:研究了将吸附和臭氧化相结合的混合工艺,作为臭味挥发性有机化合物(VOC)的替代处理方法。选择甲基乙基酮(MEK)来研究操作参数的影响。测试了两种合成的铝硅酸盐(八面沸石Y和ZSM-5)的吸附和与臭氧的反应性。对两种吸附剂的吸附平衡测量表明,吸附性能取决于温度,但由于材料的疏水性而对相对湿度不敏感。当将臭氧化流送入反应器时,吸附的VOC在低温下被氧化。同时实现了固定床的再生,主要释放出CO _2和H _2O。鉴定出氧化中间物,例如2,3-丁二酮和乙酸,导致不完全矿化。讨论了浓度和湿度的影响。测试了四个连续的循环:在第一个吸附/臭氧化循环之后,在随后的循环中吸附效率没有受到影响。这些结果表明相同的吸附剂样品可以长时间用于处理过程。臭氧再生是去除VOC的有前途的过程。

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