首页> 外文会议>IWA(International Water Association) International Specialised Conference on Large Wastewater Treatment Plants; 20030901-04; Prague(CZ) >Commissioning and operational experiences for the 160ML/d Woodman Point Sequencing Batch Reactor-control of settleability and denitrification using bioselectors
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Commissioning and operational experiences for the 160ML/d Woodman Point Sequencing Batch Reactor-control of settleability and denitrification using bioselectors

机译:160ML / d Woodman点测序间歇反应器的调试和操作经验-使用生物选择器控制沉降性和反硝化作用

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摘要

Achieving and maintaining good biomass settling characteristics is a critical process design objective for any activated sludge wastewater treatment plant (WWTP), whether intermittent or continuous technology. One way of ensuring good sludge settleability in intermittent WWTPs is the incorporation of bioselectors in the process. A bioselector is essentially a small discrete reactor volume designed primarily for carbon absorption, in which activated sludge organisms are exposed to a high substrate concentration for a relatively short time. It is normally very much smaller than an anoxic zone and the activated sludge recycle is only a fraction of that typically adopted in continuous plants. With proper conditioning, recycled biomass rapidly absorbs and stores soluble organic wastewater components before transfer to the main treatment basin. This absorption and storage mechanism, and careful management of aeration throughout the intermittent treatment cycle, plays a crucial role in many subsequent growth and treatment processes, including sludge floc formation, denitrification and biological phosphorus removal. This paper examines some design considerations, and reviews the benefits of bioselectors by reference to the commissioning and initial operation of the new 160ML/d Woodman Point Sequencing Batch Reactor in Perth, Western Australia. The applicability of bioselectors in continuous plants is discussed.
机译:对于任何活性污泥废水处理厂(WWTP),无论是间歇性技术还是连续技术,实现和保持良好的生物质沉降特性都是关键的过程设计目标。确保间歇性污水处理厂中良好的污泥沉降性的一种方法是在过程中引入生物选择器。生物选择器本质上是设计用于碳吸收的较小的离散反应器体积,其中活性污泥生物在较短时间内暴露于高底物浓度。它通常比缺氧区域小得多,活性污泥的循环仅是连续工厂通常采用的一部分。通过适当的调节,回收的生物质可以快速吸收并存储可溶性有机废水成分,然后再转移到主处理池中。这种吸收和存储机制以及在整个间歇处理周期中对通气的精心管理,在随后的许多生长和处理过程(包括污泥絮凝物形成,反硝化和生物除磷)中都起着至关重要的作用。本文考察了一些设计注意事项,并参考了西澳大利亚州珀斯市新型160ML / d Woodman点测序批量反应器的调试和初始运行情况,回顾了生物选择器的优势。讨论了生物选择剂在连续植物中的适用性。

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