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Study on the kinetics of S(IV) oxidation in the basic aluminum sulfate wet flue gas desulfurization process

机译:碱性硫酸铝湿法烟气脱硫过程中S(IV)氧化动力学的研究

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Through a laboratory-scale bubbling apparatus, the kinetics of S(IV) oxidation related to the basic aluminum sulfate (BAS) wet flue gas desulfurization (FGD) process were investigated by varying the components of the BAS solution, concentration of S(IV), temperature, air flow and oxygen partial pressure. The experimental findings showed that the oxidation rate of S(IV) slightly increased with pH as the basicity increased, while increasing the amount of aluminum could weaken the oxidation rate of sulfite. Moreover, the general reaction rate was found to be 0.21 order in S(IV) and first-order in oxygen, respectively. The apparent activation energy was calculated to be 24.5 kJ mol?1. Combined with the kinetic model of S(IV) oxidation proposed, we found that the general oxidation rate of S(IV) in BAS rich solution was controlled by the mass transfer of oxygen accompanied with a rapid chemical reaction, which was verified by the Hatta number (around 1.4). As a result, the intrinsic kinetics were investigated, indicating the reaction orders with respect to S(IV) and oxygen to be 0.42 and 1.0, respectively. The results would be valuable for process optimization or industrial design during the BAS wet FGD process.
机译:通过实验室规模的鼓泡设备,通过改变BAS溶液的成分,研究了与碱性硫酸铝(BAS)湿法烟气脱硫(FGD)过程相关的S( IV )氧化动力学。 ,S( IV )的浓度,温度,空气流量和氧气分压。实验结果表明,随着碱度的提高,S( IV )的氧化速率随pH值的增加而略有增加,而铝的添加量的增加会削弱亚硫酸盐的氧化速率。此外,在S( IV )中,一般反应速率分别为0.21级和在氧气中为一级。表观活化能经计算为24.5 kJ mol ?1 。结合所提出的S( IV )氧化动力学模型,我们发现富BAS溶液中S( IV )的一般氧化速率是由BAS的传质控制的。氧气伴随着快速的化学反应,这由哈达数(约1.4)验证。结果,研究了内在动力学,表明相对于S( IV )和氧的反应阶数分别为0.42和1.0。该结果对于在BAS湿法烟气脱硫工艺中的工艺优化或工业设计将是有价值的。

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