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Full-Scale Assessment of the Nutrient Removal Capabilities of Membrane Bioreactors

机译:膜生物反应器养分去除能力的全面评估

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Operating results from two full-scale membrane bioreactors (MBRs) practicing biological and chemical phosphorus and biological nitrogen removal to meet stringent effluent nutrient limits are analyzed. Full-scale results and special studies conducted at these facilities resulted in the development of guidelines for the design of MBRs to achieve stringent effluent nutrient concentrations-as low as 0.05 mg/L total phosphorus and 3 mg/L total nitrogen. These guidelines include the following: (1) direct the membrane recirculation flow to the aerobic zone,rn(2) provide intense mixing at the inlets of the anaerobic and anoxic zones,rn(3) maintain internal recirculation flowrates to maintain the desired mixed liquor suspended solids distribution, and (4) carefully control supplemental metal salt addition in proportion to the phosphorus remaining after biological removal is complete. Staging the various process zones and providing effective dissolved oxygen control also enhances nutrient removal performance. The results demonstrated that process performance can be characterized by the International Water Association (London, United Kingdom) (IWA) activated sludge model number 2d (ASM2d) and the Water Environment Federation (Alexandria, Virginia) chemical phosphorus removal model. These models subsequently were used to develop unique process configurations that are currently under design and/ or construction for several full-scale -nutrient removal MBRs.
机译:分析了两个全尺寸膜生物反应器(MBR)的操作结果,这些反应器可进行生物和化学除磷和生物除氮,以满足严格的污水养分限值。在这些设施上进行的全面结果和专门研究导致制定了MBR设计指南,以实现严格的污水营养浓度-低至0.05 mg / L的总磷和3 mg / L的总氮。这些准则包括以下内容:(1)将膜再循环流引导至好氧区域,rn(2)在厌氧和缺氧区域的入口处提供强烈的混合,rn(3)保持内部再循环流量以维持所需的混合液悬浮固体的分布,以及(4)按照生物去除完成后剩余磷的比例,小心控制补充金属盐的添加。分级处理各个区域并提供有效的溶解氧控制还可以增强营养去除性能。结果表明,可以通过国际水协会(英国伦敦)(IWA)2d型活性污泥模型(ASM2d)和水环境联合会(弗吉尼亚州亚历山大市)化学除磷模型来表征工艺性能。随后,这些模型被用于开发独特的工艺配置,这些工艺配置目前正在设计和/或构建中,用于多种全营养去除MBR。

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