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Sludge population optimisation in biological nutrient removal wastewater treatment systems through on-line process control: a re/view

机译:通过在线过程控制优化生物营养去除废水处理系统中的污泥数量

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On-line process control may cause substantial changes to the microbial community in a biological wastewater treatment system. Recent studies have shown such effects can be exploited in control system design to achieve an optimised microbial community. Excellent progress has been made on the elimination of nitrite-oxidising bacteria (NOB) in biological nitrogen removal wastewater treatment systems using on-line aeration control, enabling nitrogen removal via the nitrite pathway. Control methods for eliminating NOB are now available for both continuous systems and sequencing batch reactors, and have been demonstrated with both domestic and various types of industrial wastewaters. The elimination or reduced growth of glycogen accumulating organisms (GAOs), a competitor of polyphosphate accumulating organisms (PAOs), in enhanced biological phosphorus removal (EBPR) systems via pH and carbon source control has been conceptually demonstrated through the use of enriched cultures. However, these strategies are not yet ready for the control of practical EBPR processes. Sludge population optimisation also involves selecting the most desirable organism or a consortium of organisms to perform a required function. This is particularly important for nitrification, one of the most important and delicate steps in modern wastewater treatment plants. Results from both experimental and simulation studies suggest that reactor operation could have a major impact on the nitrifier community structure, which should be further investigated in future studies.
机译:在线过程控制可能会导致生物废水处理系统中微生物群落的实质性变化。最近的研究表明,可以在控制系统设计中利用这种效应来实现最佳的微生物群落。在使用在线曝气控制消除生物脱氮废水处理系统中的亚硝酸根氧化细菌(NOB)方面取得了卓越的进展,从而可以通过亚硝酸盐途径去除氮。现在,连续系统和分批间歇反应器都可以使用消除NOB的控制方法,并且已经在生活污水和各种类型的工业废水中得到了证明。已通过使用富集培养物从概念上证明了通过pH和碳源控制在增强的生物除磷(EBPR)系统中消除或减少了糖原累积生物(GAO)(多磷酸盐累积生物(PAO)的竞争者)的生长。但是,这些策略尚未准备好控制实际的EBPR流程。污泥种群的优化还涉及选择最理想的生物或生物群落以执行所需功能。这对于硝化尤为重要,这是现代废水处理厂中最重要,最微妙的步骤之一。实验和模拟研究的结果均表明,反应器的运行可能会对硝化器群落结构产生重大影响,应在以后的研究中进一步研究。

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