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Studying the Adsorption Performance in Binding of BTEX in the Air by Activated Carbon

机译:研究活性炭对空气中BTEX结合的吸附性能

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The adsorption experiment was carried out in an enclosed reactor in order to evaluate activated carbon, prepared by brewing yeast, which could remove benzene, toluene, ethylbenzene, and xylene (BTEX) from air. Various experimental parameters were determined, and activated carbon adsorption performance was compared with some commercial activated carbons (CACs). The results showed that lots of carboxyl, amino-groups and hydroxyl were on the surface of activated carbon, which were chemical reaction centers. Adsorption was reached equilibrium after six hours. The isothermal data of biosorption followed the Langmuir and Freundlich Models. When the temperature was 25°C, the maximum adsorption capacity was greater than the commercial activated carbon. These adsorption performances indicate that the activated carbon is a potentially economical adsorbent for BTEX removal.
机译:在密闭反应器中进行吸附实验,以评估通过酿造酵母制备的活性炭,该活性炭可以从空气中去除苯,甲苯,乙苯和二甲苯(BTEX)。确定了各种实验参数,并将活性炭的吸附性能与某些商用活性炭(CAC)进行了比较。结果表明,活性炭表面存在大量的羧基,氨基和羟基,是化学反应的中心。六小时后吸附达到平衡。生物吸附的等温数据遵循Langmuir和Freundlich模型。当温度为25℃时,最大吸附容量大于市售活性炭。这些吸附性能表明,活性炭是去除BTEX的潜在经济吸附剂。

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