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Optimising design, operation and energy consumption of biological aerated filters (BAF) for nitrogen removal of municipal wastewater

机译:优化生物曝气过滤器(BAF)的设计,操作和能耗,用于氮气去除市政废水

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The Biofiltration process in wastewater treatment combines filtration and biological processes in one reactor. In Europe it is meanwhile an accepted technology in advanced wastewater treatment, whenever space is scarce and a virtually suspended solids-free effluent is demanded. Although more than 500 plants are in operation world-wide there is still a lack of published operational experiences to help planners and operators to identify potentials for optimisation, e.g. energy consumption or the vulnerability against peak-loads. Examples from pilot trials are given how the nitrification and denitrification can be optimised. Nitrification can be quickly increased by adjusting DO content of the water. Furthermore carrier materials like zeolites can store surplus ammonia during peak loads and release afterwards. Pre-denitrification in biofilters is normally limited by the amount of easily degradable organic substrate, resulting in relatively high requirements for external carbon. The combination of pre-DN, N and post-DN filters is much more advisable for most municipal wastewaters, because the recycle rate can be reduced and external carbon can be saved. Exemplarily it is shown for a full scale preanoxic-DN/N/postanoxic-DN plant of 130,000 p.e. how 15% energy could be saved by optimising internal recycling and some control strategies.
机译:废水处理中的生物滤光方法将过滤和生物过程结合在一种反应器中。在欧洲,它同时在高级废水处理中是一种可接受的技术,每当空间稀缺,需要一个几乎悬浮的无固体废水。虽然超过500种植物在全球运营中,但仍然缺乏公布的经营体验,帮助规划者和运营商识别优化的潜力,例如,能量消耗或对峰值负荷的脆弱性。赋予试验试验的实例是如何优化硝化和脱氮。通过调节水的含量可以快速增加硝化。此外,像沸石这样的载体材料可以在峰值载荷期间储存剩余氨并发释放。生物过滤器中的预脱氮通常受易于降解的有机基质的量限制,导致对外碳的较高要求。对于大多数城市废水器来说,Pre-DN,N和DN滤波器的组合更为建议,因为可以减少回收率,并且可以节省外部碳。示例性地显示为130,000 p.e的全级预碱-DN / N /后氧基-DN工厂。通过优化内部回收和一些控制策略,可以节省15%的能量。

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