首页> 外文会议>IWA(International Water Association) International Conference on Biofilm Systems; 20030914-18; Cape Town(ZA) >Treatment of municipal wastewater in a hybrid process using a new suspended carrier with large surface area
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Treatment of municipal wastewater in a hybrid process using a new suspended carrier with large surface area

机译:使用新的大表面积悬浮载体在混合工艺中处理市政废水

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An activated sludge/biofilm hybrid process treating municipal wastewater was studied in pilot plant trials. A new type of suspended carrier, with large effective surface area, was employed in the process with the aim of enhancing nitrification. The pilot plant was operated for 1.5 years in five different configurations including pre-denitrification in all five and enhanced biological phosphorus removal in the final two. The wastewater temperature ranged between 11℃ and 20℃, and the nominal dissolved oxygen (DO) level was 5-6 mg/L. The nitrification rate obtained on the new carrier within the hybrid stage was in the range of 0.9-1.2 g NH_4-N/m~2/d corresponding to a volumetric rate of 19-23 g NH_4-N/m~3/h (total nitrification including nitrification in the suspended solids). More than 80% of the total nitrification took place on the carrier (and the remainder in the suspended solids). The nitrification rate was shown to correlate with DO, decreasing when the DO was decreased. The results supported the idea of using the new carrier as a tool to upgrade plants not having nitrification today or improve nitrification in activated sludge processes not reaching necessary discharge levels. The large surface area present for nitrification makes it possible to obtain high nitrification rates within limited volumes. The possibility to keep the total suspended solid content low ( < 3 g/L) and avoiding problems with the filament Microthrix parvicella, are other beneficial properties of the hybrid process.
机译:在中试工厂试验中研究了一种活性污泥/生物膜混合工艺处理市政废水的方法。为了增强硝化作用,在该方法中采用了一种具有大有效表面积的新型悬浮载体。该中试工厂以五种不同的配置运行了1.5年,包括全部五个设备都进行了预脱硝处理,最后两个设备中则增强了生物除磷能力。废水温度在11℃至20℃之间,标称溶解氧(DO)水平为5-6 mg / L。在混合阶段,在新载体上获得的硝化速率在0.9-1.2 g NH_4-N / m〜2 / d的范围内,相当于19-23 g NH_4-N / m〜3 / h的体积比(总硝化,包括悬浮固体中的硝化)。总硝化作用的80%以上发生在载体上(其余的发生在悬浮固体中)。硝化速率与溶解氧相关,当溶解氧降低时降低。结果支持使用新载体作为工具来升级当今没有硝化作用的工厂或提高未达到必要排放水平的活性污泥工艺中的硝化作用的想法。存在用于硝化的大表面积使得可以在有限的体积内获得高硝化速率。降低总悬浮固体含量(<3 g / L)并避免细丝Microthrix parvicella出现问题的可能性是混合工艺的其他有益特性。

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