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移动床生物膜反应器技术:工艺应用、设计与性能。

Moving bed biofilm reactor technology: process applications, design, and performance.

机构信息

Metro Wastewater Reclamation District, Denver, Colorado, USA.

出版信息

Water Environ Res. 2011 Jun;83(6):560-75. doi: 10.2175/106143010x12851009156286.

Abstract

The moving bed biofilm reactor (MBBR) can operate as a 2- (anoxic) or 3-(aerobic) phase system with buoyant free-moving plastic biofilm carriers. These systems can be used for municipal and industrial wastewater treatment, aquaculture, potable water denitrification, and, in roughing, secondary, tertiary, and sidestream applications. The system includes a submerged biofilm reactor and liquid-solids separation unit. The MBBR process benefits include the following: (1) capacity to meet treatment objectives similar to activated sludge systems with respect to carbon-oxidation and nitrogen removal, but requires a smaller tank volume than a clarifier-coupled activated sludge system; (2) biomass retention is clarifier-independent and solids loading to the liquid-solids separation unit is reduced significantly when compared with activated sludge systems; (3) the MBBR is a continuous-flow process that does not require a special operational cycle for biofilm thickness, L(F), control (e.g., biologically active filter backwashing); and (4) liquid-solids separation can be achieved with a variety of processes, including conventional and compact high-rate processes. Information related to system design is fragmented and poorly documented. This paper seeks to address this issue by summarizing state-of-the art MBBR design procedures and providing the reader with an overview of some commercially available systems and their components.

摘要

移动床生物膜反应器(MBBR)可以作为 2-(缺氧)或 3-(好氧)相系统运行,使用有浮力的自由移动的塑料生物膜载体。这些系统可用于城市和工业废水处理、水产养殖、饮用水脱氮,以及粗处理、二级、三级和支流应用。该系统包括淹没式生物膜反应器和液固分离单元。MBBR 工艺的优点包括:(1)能够满足与活性污泥系统类似的处理目标,包括碳氧化和氮去除,但需要的罐体积小于与澄清器耦合的活性污泥系统;(2)生物量保留与澄清器无关,与活性污泥系统相比,固体负荷到液固分离单元显著降低;(3)MBBR 是一个连续流工艺,不需要特殊的生物膜厚度(L(F))操作周期进行控制(例如,生物活性过滤器反冲洗);(4)可以使用多种工艺实现液固分离,包括传统和紧凑的高速工艺。与系统设计相关的信息是零散的,记录也很差。本文旨在通过总结最先进的 MBBR 设计程序来解决这个问题,并为读者提供一些商业上可用的系统及其组件的概述。

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