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Desulfurization of gas oil using a solar photocatalytic microreactor

机译:使用太阳光催化微反应器脱硫瓦斯油

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The desulfurization of dibenzothiophene (DBT) was studied in a homemade Y-shape catalytic microreactor utilizing solar incident energy. The microchannel was coated with Ti02 nanoparticles. Performance of the microreactor was investigated using different conditions (e.g., DBT concentration, LHSV, operating temperature, and (H2O2/DBT) ratio). Our experiments show that, in the absence of UV light, no reaction takes place. The results revealed that outlet concentration of DBT decreases as the mean residence time in the microreactor increases. Also, it was noted that operating temperature has a positive impact on the degradation rate of DBT while LHSV showed a different image. The results reported an optimum (H2O2/DBT) ratio which gave maximum conversion of DBT. Kinetic study was carried out which confirmed that desulfurization of DBT followed a pseudo-first order reaction at 30 and 50°C, respectively. However deviation from linearity was observed at 60°C. Comparison between microreactor's performance and performance of batch reactors from published literature were illustrated. The Comparison confirmed the unique characteristics of the microreactor.
机译:利用太阳入射能量在自制Y形催化微反应器中研究了二苯甲酸乙烯(DBT)的脱硫。微通道涂有TiO 2纳米颗粒。使用不同的条件研究微反应器的性能(例如,DBT浓度,LHSV,工作温度和(H2O2 / DBT)比率)。我们的实验表明,在没有紫外光的情况下,没有发生反应。结果表明,随着微反应器中的平均停留时间增加,DBT的出口浓度降低。此外,有人指出,工作温度对DBT的降解率产生正影响,而LHSV显示出不同的图像。结果报告了最佳(H2O2 / DBT)比率,其具有最大的DBT转换。进行动力学研究,证实DBT的脱硫在30和50℃下分别在30和50℃下进行伪阶反应。然而,在60℃下观察到与线性的偏差。图说明了MicroreActor的性能和来自公开文献的批量反应器的性能的比较。比较证实了微反应器的独特特征。

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