缩小通风足迹:在MBR系统中去除的创新方法
Adam Klein1, Shannon Cavanaugh1, Larry Morris2
1Brown and Caldwell, Seattle, Washington, USA.
概括
膜中的生物处理显著影响膜生物反应器 (MBR) 的性能. 这一发现表明,MBR系统可以通过考虑这些坦克内反应来优化,从而潜在地减少空气化体积.
科学领域:
- 环境工程 环境工程
- 水处理技术 水处理技术
- 生物反应器系统
背景情况:
- 膜生物反应器 (MBR) 系统对于先进的废水处理至关重要.
- 优化MBR设计可以节省成本并提高效率.
- 膜内部生物过程本身的作用需要进一步澄清.
研究的目的:
- 在MBR系统中评估膜的生物处理性能.
- 为了比较 MBR 性能与上游通风盆和没有上游通风盆.
- 为了确定膜中的生物反应是否对整体处理效率有显著的贡献.
主要方法:
- 在华盛顿州塔科马进行了为期7个月的试点调查.
- 对比了两个操作方案:有和没有上游通风盆.
- 对生化氧需求 (BOD),碳化BOD (cBOD),氨,可溶化学氧需求 (sCOD),脱和生物去除的监测废水质量.
主要成果:
- 在两个操作方案中,BOD,cBOD和氨的废水度相似.
- 在膜内也观察到脱和生物去除.
- 上游通风流域的存在或不存在并没有显著改变主要废水参数.
结论:
- 发生在膜内的生物过程在MBR处理性能中起着重要作用.
- 在确定反应器尺寸时,MBR系统设计人员应考虑膜内的生物活动.
- 通过利用水箱内的生物反应,有可能减少MBR系统中的空气体积.
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