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Fluidized-Bed Bioreactor Applications for Biological Wastewater Treatment: A Review of Research and Developments

机译:流化床生物反应器在生物废水处理中的应用:研究与发展回顾

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摘要

Wastewater treatment is a process that is vital to protecting both the environment and human health.At present,the most cost-effective way of treating wastewater is with biological treatment processes such as the activated sludge process,despite their long operating times.However,population increases have created a demand for more efficient means of wastewater treatment.Fluidization has been demonstrated to increase the efficiency of many processes in chemical and biochemical engineering,but it has not been widely used in large-scale wastewater treatment.At the University of Western Ontario,the circulating fluidized-bed bioreactor (CFBBR) was developed for treating wastewater.In this process,carrier particles develop a biofilm composed of bacteria and other microbes.The excellent mixing and mass transfer characteristics inherent to fluidization make this process very effective at treating both municipal and industrial wastewater.Studies of lab-and pilot-scale systems showed that the CFBBR can remove over 90% of the influent organic matter and 80% of the nitrogen,and produces less than one-third as much biological sludge as the activated sludge process.Due to its high efficiency,the CFBBR can also be used to treat wastewaters with high organic solid concentrations,which are more difficult to treat with conventional methods because they require longer residence times;the CFBBR can also be used to reduce the system size and footprint.In addition,it is much better at handling and recovering from dynamic loadings (i.e.,varying influent volume and concentrations)than current systems.Overall,the CFBBR has been shown to be a very effective means of treating wastewater,and to be capable of treating larger volumes of wastewater using a smaller reactor volume and a shorter residence time.In addition,its compact design holds potential for more geographically localized and isolated wastewater treatment systems.
机译:废水处理是一个对保护环境和人类健康至关重要的过程。目前,处理废水的最经济有效的方法是采用生物处理工艺,例如活性污泥工艺,尽管它们的运行时间很长。越来越多的人提出了对更有效的废水处理方式的需求。流化技术已被证明可以提高化学和生化工程中许多过程的效率,但尚未在大规模废水处理中得到广泛应用。西安大略大学循环流化床生物反应器(CFBBR)用于处理废水。在此过程中,载体颗粒形成了由细菌和其他微生物组成的生物膜。流化所固有的出色的混合和传质特性使其在处理两种废水方面非常有效。市政和工业废水。实验室和中试规模系统的研究表明,CF BBR可以去除90%以上的流入有机物和80%的氮,产生的生物污泥不到活性污泥法的三分之一。由于CFBBR的高效率,它也可以用于处理废水。有机固体浓度高,由于需要更长的停留时间,因此用常规方法更难处理; CFBBR也可用于减小系统尺寸和占地面积。此外,它在动态载荷的处理和恢复方面要好得多总的来说,CFBBR被证明是一种非常有效的废水处理方法,并且能够使用较小的反应器体积和较短的停留时间来处理较大体积的废水。此外,其紧凑的设计为更多地域定位和隔离的废水处理系统提供了潜力。

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  • 来源
    《工程(英文)》 |2017年第003期|330-342|共13页
  • 作者单位

    Particle Technology Research Center, The University of Western Ontario, London, ON N6A 5B9, Canada;

    Particle Technology Research Center, The University of Western Ontario, London, ON N6A 5B9, Canada;

    Particle Technology Research Center, The University of Western Ontario, London, ON N6A 5B9, Canada;

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  • 入库时间 2022-08-19 04:13:35
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