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Photocatalytic degradation of aniline using an autonomous rotating drum reactor with both solar and UV-C artificial radiation

机译:使用具有太阳和UV-C人工辐射的自主旋转鼓式反应器对苯胺进行光催化降解

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摘要

The aim of this work was to evaluate the performance of a novel self-autonomous reactor technology (capable of working with solar irradiation and artificial UV light) for water treatment using aniline as model compound. This new reactor design overcomes the problems of the external mass transfer effect and the accessibility to photons occurring in traditional reaction systems. The UV-light source is located inside the rotating quartz drums (where TiO_2 is immobilized), allowing light to easily reach the water and the TiO_2 surface. Several processes (UV, H_2O_2, Solar, TiO_2, Solar/TiO_2, Solar/TiO_2/H2O_2 and UV/Solar/ H_2O_2/TiO_2) were tested. The synergy between Solar/H_2O_2 and Solar/TiO_2 processes was quantified to be 40.3% using the pseudo-first-order degradation rate. The apparent photonic efficiency, ζ, was also determined for evaluating light utilization. For the Solar/ TiO_2/H_2O_2 process, the efficiency was found to be practically constant (0.638-0.681%) when the film thickness is in the range of 1.67-3.87 μm. However, the efficiency increases up to 2.67% when artificial UV light was used in combination, confirming the efficient design of this installation. Thus, if needed, lamps can be switched on during cloudy days to improve the degradation rate of aniline and its mineralization. Under the optimal conditions selected for the Solar/TiO_2/H_2O_2 process ([H_2O_2] = 250 mg/ L; pH = 4, [TiO_2] = 0.65-1.25 mg/cm~2), 89.6% of aniline is degraded in 120 min. If the lamps are switched on, aniline is completely degraded in 10 min, reaching 85% of mineralization in 120 min. TiO_2 was re-used during 5 reaction cycles without apparent loss in activity (<2%). Quantification of hydroxyl radicals and dissolved oxygen allows a chemical-based explanation of the process. Finally, the UV/Solar/TiO_2/H_2O_2 process was found to have lower operation costs than other systems described in literature (0.67 €/m~3).
机译:这项工作的目的是评估使用苯胺作为模型化合物进行水处理的新型自主反应器技术(能够与太阳辐射和人造紫外线一起使用)的性能。这种新的反应器设计克服了外部传质效应和传统反应系统中出现的光子可及性的问题。紫外线光源位于旋转的石英鼓内(固定TiO_2的位置),从而使光线轻松到达水和TiO_2表面。测试了几种工艺(UV,H_2O_2,太阳能,TiO_2,太阳能/ TiO_2,太阳能/ TiO_2 / H2O_2和UV /太阳能/ H_2O_2 / TiO_2)。使用拟一级降解率将Solar / H_2O_2和Solar / TiO_2工艺之间的协同作用量化为40.3%。还确定了表观光子效率ζ,以评估光利用率。对于Solar / TiO_2 / H_2O_2工艺,发现当膜厚在1.67-3.87μm范围内时,效率实际上是恒定的(0.638-0.681%)。但是,当组合使用人工紫外线时,效率最高可提高2.67%,从而证实了该装置的高效设计。因此,如果需要,可以在阴天时打开灯以提高苯胺的降解速率及其矿化。在为Solar / TiO_2 / H_2O_2工艺选择的最佳条件下([H_2O_2] = 250 mg / L; pH = 4,[TiO_2] = 0.65-1.25 mg / cm〜2),在120分钟内降解了89.6%的苯胺。如果打开灯,苯胺会在10分钟内完全降解,在120分钟内达到85%的矿化度。 TiO_2在5个反应周期内重复使用,活性没有明显降低(<2%)。羟基自由基和溶解氧的定量可以对过程进行基于化学的解释。最后,发现UV / Solar / TiO_2 / H_2O_2工艺比文献中描述的其他系统具有更低的运行成本(0.67€/ m〜3)。

著录项

  • 来源
    《Journal of Environmental Management》 |2018年第15期|122-130|共9页
  • 作者单位

    Department of Chemical Engineering, Grupo IMAES, Escuela Tecnica Superior de Ingenieros Industrials, Instituto de Investigaciones Energeticas y Aplicationes Industriales (INEI), Universidad de Castilla-La Mancha, Avda. Camilo Jose Cela 3, 13071, Ciudad Real, Spain;

    Department of Chemical Engineering, Grupo IMAES, Escuela Tecnica Superior de Ingenieros Industrials, Instituto de Investigaciones Energeticas y Aplicationes Industriales (INEI), Universidad de Castilla-La Mancha, Avda. Camilo Jose Cela 3, 13071, Ciudad Real, Spain;

    Department of Chemical Engineering, Grupo IMAES, Escuela Tecnica Superior de Ingenieros Industrials, Instituto de Investigaciones Energeticas y Aplicationes Industriales (INEI), Universidad de Castilla-La Mancha, Avda. Camilo Jose Cela 3, 13071, Ciudad Real, Spain;

    Department of Chemical Engineering, Grupo IMAES, Escuela Tecnica Superior de Ingenieros Industrials, Instituto de Investigaciones Energeticas y Aplicationes Industriales (INEI), Universidad de Castilla-La Mancha, Avda. Camilo Jose Cela 3, 13071, Ciudad Real, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mineralization; Re-use; Synergy; TiO_2;

    机译:矿化;重复使用;协同作用TiO_2;

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