School of Environment, Harbin Institute of Technology, Harbin 150090, China.
School of Environment, Harbin Institute of Technology, Harbin 150090, China; College of Resources and Environment, University of Chinese Academy of Science (UCAS), Beijing 100049, China.
Bioresour Technol. 2021 Apr;325:124714. doi: 10.1016/j.biortech.2021.124714. Epub 2021 Jan 15.
This study comprehensively investigated the role of shear stress in a biological aerated filter under nanobubble aeration with the operation of an internal reflux and mechanical bubbling, where nanobubbles provide an opportunity to separately assess the effect of the hydraulic shear stress and aeration on the properties of the biofilms. Shear stress optimized the oxygen distribution, which improved the dissolved oxygen of the effluent three- and four-fold through reflux and mechanical bubbling, respectively. Proper shear stress enhanced the spatial development of the biofilms and promoted the activity and stability of nanobubble-aerated biofilms, achieving a sufficient contaminant removal efficiency that meets the local standard. Shear stress and aeration individually regulated the functional pathways and improved the development of the biofilm structure and the performance. The results indicate that nanobubble is a promising aeration technology when accompanied by a shearing strategy.
本研究综合考察了内回流和机械曝气条件下,纳米气泡曝气中剪切应力在生物曝气滤池中的作用,纳米气泡为单独评估水力剪切应力和曝气对生物膜特性的影响提供了机会。剪切应力优化了氧气分布,分别通过回流和机械曝气将出水的溶解氧提高了 3 倍和 4 倍。适当的剪切应力促进了生物膜的空间发展,并促进了纳米气泡曝气生物膜的活性和稳定性,达到了满足当地标准的足够的污染物去除效率。剪切应力和曝气分别调节了功能途径,改善了生物膜结构和性能的发展。结果表明,纳米气泡是一种很有前途的曝气技术,当与剪切策略结合使用时效果更佳。