首页> 外文学位 >Fluidized bed photocatalytic reactor system for disinfection and wastewater treatment.
【24h】

Fluidized bed photocatalytic reactor system for disinfection and wastewater treatment.

机译:用于消毒和废水处理的流化床光催化反应器系统。

获取原文
获取原文并翻译 | 示例

摘要

Heterogeneous photocatalysis has attracted a large number of researchers around the globe due to its intriguing advantages in the area of environmental remediation. The ability to degrade numerous pollutants and disinfect microorganisms using an inexpensive catalyst and low energy UV light (even sunlight) makes it an attractive alternative to the other available treatment technologies. However, a suitable reactor design is required for commercial application of photocatalysis. Due to lack of effective designs, the use of photocatalysis is still limited commercially. The objective of this research was to develop and optimize an effective fluidized bed type photocatalytic reactor using the specially prepared supported photocatalyst.; In this research, an integrated photocatalyst adsorbent (IPCA) mounted on the porous silica beads as the support was used as the photocatalyst. The active material in the photocatalyst was Degussa P-25 TiO2 bound to a Silicalite I zeolite adsorbent. Fluidized bed reactors with axial and multi-lamp arrangements were explored in this study. Hydrodynamics of the reactors were investigated using computational fluid dynamics (CFD) software 'Fluent'. Fluidized bed type reactors with various scales (laboratory to pilot scale) were investigated for their effectiveness in the removal of the model pollutant "Phenol" and model microorganism "E.coli". Also, the effect of adding hydrogen peroxide in the photocatalytic process to degrade phenol was investigated in this study.; Results of E.coli disinfection process suggested a higher efficiency of E.coli removal by photocatalysis compared to photolysis. From experimental results, it was found that degradation efficiency of the photocatalytic process alone in removing organic pollutants was limited. Under a certain combination of the process parameters, a particular level (∼30%) of phenol degradation can be achieved. There is an optimum level of photocatalyst loading required in the photocatalytic process to degrade phenol. The addition of hydrogen peroxide was found to be highly beneficial to degrade phenol. Results of the series of experiments suggested that a combination of a reasonably small dose of hydrogen peroxide and small amount of catalyst loading was the most efficient process. Preliminary experiments of Bisphenol-A (BPA) and sulfolane degradation on the laboratory scale proved in principle effectiveness of removal of the other model pollutants. This study indicated that there is a potential for the fluidized bed reactor with IPCA as the photocatalyst for the scale-up.
机译:非均相光催化技术在环境修复领域具有吸引人的优势,已吸引了全球众多研究人员。使用廉价的催化剂和低能量的紫外线(甚至是日光)可以降解多种污染物并消毒微生物的能力使其成为其他可用处理技术的有吸引力的替代品。然而,光催化的商业应用需要合适的反应器设计。由于缺乏有效的设计,光催化的使用仍然在商业上受到限制。该研究的目的是使用特别制备的负载型光催化剂开发和优化有效的流化床型光催化反应器。在这项研究中,将集成在多孔二氧化硅微珠上作为载体的集成光催化剂吸附剂(IPCA)用作光催化剂。光催化剂中的活性物质是与Silicalite I沸石吸附剂结合的Degussa P-25 TiO2。在这项研究中探索了具有轴向和多灯布置的流化床反应器。使用计算流体动力学(CFD)软件“ Fluent”研究了反应堆的流体动力学。研究了各种规模(实验室到中试规模)的流化床型反应器在去除模型污染物“苯酚”和模型微生物“大肠杆菌”中的有效性。另外,本研究还研究了在光催化过程中加入过氧化氢对苯酚的降解作用。大肠杆菌消毒过程的结果表明,与光解相比,通过光催化去除大肠杆菌的效率更高。从实验结果发现,仅光催化过程的降解效率在去除有机污染物方面是有限的。在一定的工艺参数组合下,可以实现特定水平(约30%)的苯酚降解。在光催化过程中需要有最佳水平的光催化剂负载量以降解苯酚。发现添加过氧化氢对降解苯酚非常有利。一系列实验的结果表明,合理地使用少量的过氧化氢和少量的催化剂是最有效的方法。实验室规模的双酚A(BPA)和环丁砜降解的初步实验原则上证明了去除其他模型污染物的有效性。这项研究表明,使用IPCA作为光催化剂的流化床反应器具有扩大规模的潜力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号