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Adsorptive desulfurization of bioethanol using activated carbon loaded with zinc oxide

机译:负载氧化锌的活性炭对生物乙醇的吸附脱硫

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Adsorptive desulfurization of a model bioethanol that contained dimethylsulfide (DMS) as a sulfur impurity was investigated using an activated carbon loaded with zinc oxide. We studied the effect of the amount of zinc oxide loaded on the activated carbon as well as the effect of the other impurities, such as water, acetic acid and formic acid, on liquid-phase adsorption isotherms of DMS. The amount of adsorbed DMS on the activated carbon loaded with 10 wt.% of zinc oxide doubled as compared with the virgin activated carbon. It was also revealed that the amount of DMS adsorbed on the zinc-modified activated carbon was almost unchanged by the presence of the other impurities. Dynamic adsorption performance of the activated carbon was evaluated by the measurement of a packed-bed breakthrough curve (BTC). The measured BTC was fitted by a calculated BTC based on a numerical method to estimate the mass transfer parameters in the liquid-phase desulfurization process.
机译:使用载有氧化锌的活性炭研究了包含二甲基硫醚(DMS)作为硫杂质的模型生物乙醇的吸附脱硫。我们研究了负载在活性炭上的氧化锌的量以及其他杂质(如水,乙酸和甲酸)对DMS液相吸附等温线的影响。与原始活性炭相比,在载有10 wt。%氧化锌的活性炭上DMS的吸附量增加了一倍。还揭示出由于存在其他杂质,吸附在锌改性的活性炭上的DMS的量几乎没有变化。活性炭的动态吸附性能通过填充床穿透曲线(BTC)的测量进行评估。基于数值方法,通过计算出的BTC拟合所测得的BTC,以估计液相脱硫过程中的传质参数。

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