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Upgrading of sewage treatment plant by sustainable and cost-effective separate treatment of industrial wastewater

机译:通过可持续且具有成本效益的工业废水分离处理来升级污水处理厂

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The Olburgen sewage treatment plant has been upgraded to improve the effluent quality by implementing a separate and dedicated treatment for industrial (potato) wastewater and reject water. The separate industrial treatment has been realized within a beneficial public-private partnership. The separate treatment of the concentrated flows of industrial wastewater and sludge treatment effluent proved to be more cost-efficient and area and energy efficient than a combined traditional treatment process. The industrial wastewater was first treated in a UASB reactor for biogas production. The UASB reactor effluent was combined with the reject water and treated in a struvite reactor (Phospaq process) followed by a one stage granular sludge nitritation/anammox process. For the first time both reactors where demonstrated on full scale and have been operated stable over a period of 3 years. The recovered struvite has been tested as a suitable substitute for commercial fertilizers. Prolonged exposure of granular anammox biomass to nitrite levels up to 30 mg/l did not result in inhibition of the anammox bacteria in this reactor configuration. The chosen option required a 17 times smaller reactorvolume (20,000 m(3) less volume) and saves electric power by approximately 1.5 GWh per year.
机译:Olburgen污水处理厂已经升级,通过对工业(马铃薯)废水和废水实施单独的专用处理来提高废水质量。在有利的公私合营关系中实现了单独的工业处理。与传统的联合处理工艺相比,工业废水和污泥处理废水的集中流的单独处理被证明具有更高的成本效益,面积和能源效率。首先在UASB反应器中处理工业废水以生产沼气。将UASB反应器流出物与废水合并,并在鸟粪石反应器中进行处理(Phospaq工艺),然后进行一级颗粒污泥硝化/厌氧氨氧化工艺。这两个反应堆都首次大规模展示,并在3年​​内稳定运行。回收的鸟粪石已经过测试,可作为商业肥料的合适替代品。在这种反应器配置中,颗粒状厌氧生物质长时间暴露于亚硝酸盐含量高达30 mg / l不会导致对厌氧菌的抑制。所选的选件需要小17倍的反应堆容积(少20,000 m(3)的容积),每年可节省约1.5 GWh的电力。

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