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首页> 外文期刊>International Journal of Environmental Science and Technology >The efficacy of the ozonation process in the presence of activated carbon impregnated with magnesium oxide in the removal of benzene from the air stream
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The efficacy of the ozonation process in the presence of activated carbon impregnated with magnesium oxide in the removal of benzene from the air stream

机译:臭氧处理过程在从空气流中除去氧化镁的活性炭存在下的效果

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The main purpose of this study was to investigate the catalytic ozonation process with GAC-MgO in removal of benzene in air streams. The flow diagram of the experimental bench-scale setup included a glass column (internal diameter = 3 cm) packed for 10 cm with granular activated carbon coated with magnesium oxide. Different initial concentrations of benzene (80, 200 and 400 ppm) were used to evaluate the removal efficiency. The synthesized granular activated carbon coated by magnesium oxide was a microporous adsorbent with the BET specific surface area of 1028 m(2)/g. Hydroxyl, methylene, methyl, carboxylic groups and aromatic C=C bonds were some of the several functional groups identified on the its surface. In the catalytic ozonation process, the breakthrough time for the inlet concentration of 200 ppm increased from 36 h for granular activated carbon to 53 h for granular activated carbon ozonation. In other words, the concomitant use of activated carbon and ozone enhanced (from 36 h to 53 h) the removal efficiency of the system by 17 h in comparison with activated carbon alone. In the ozonation process for the bed, the benzene breakthrough time of the bed, for the inlet concentration of 200 ppm, increased from 44 h in the granular activated carbon coated by magnesium oxide system to 78 h in the granular activated carbon coated by magnesium oxide and ozonation. Eventually, the results showed the ozonation process in combination with the granular activated carbon coated by magnesium oxide catalyst.
机译:本研究的主要目的是研究具有GAC-MgO的催化臭氧处理方法在空气流中除去苯。实验台级设置的流程图包括填充10cm的玻璃柱(内径= 3cm),其涂覆含有氧化镁的粒状活性炭。使用不同的初始浓度的苯(80,20,20和400ppm)来评估去除效率。氧化镁涂覆的合成粒状活性炭是微孔吸附剂,BET比表面积为1028m(2)/ g。羟基,亚甲基,甲基,羧基和芳族C = C键是其表面上鉴定的几个官能团中的一些。在催化臭氧化方法中,200ppm的入口浓度的突破时间从36小时增加到粒状活性炭至53小时,以进行颗粒状活性炭臭氧化。换句话说,同时使用活性炭和臭氧增强(从36小时至53小时),与单独的活性炭相比,17小时将系统的去除效率达到17小时。在床的臭氧过程中,床的苯突破时间为200ppm的入口浓度,从氧化镁系统涂覆的粒状活性炭中的粒状活性炭中的44小时增加到78小时,氧化镁涂覆颗粒状活性炭和ozonation。最终,结果表明臭氧处理与氧化镁催化剂涂覆的粒状活性炭相结合。

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