首页> 外文会议>IWA(International Water Association) International Conference on Biofilm Systems; 20030914-18; Cape Town(ZA) >Trickling filters for upgrading low technology wastewater plants for nitrogen removal
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Trickling filters for upgrading low technology wastewater plants for nitrogen removal

机译:滴滤池用于升级低技术废水处理厂以去除氮

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Previous work through the 1990s in the Thames Water region in the UK has demonstrated the ability of the trickling filter process to produce fully nitrified effluents, reliably throughout the year. The original data used for the nitrification model derivations have been reanalysed, to investigate the degree of nitrogen removal across the process. Removals of total nitrogen ranging from 0% to over 50% were observed across the trickling filter process and calculated total nitrogen removals of 26-63% were obtained when primary treatment was included. The degree of nitrogen removal and biological denitrification (excluding cellular assimilation) was found to be strongly influenced by BOD load, irrigation velocity and media size. Regression models were produced which gave good predictive relationships for the data ranges used. The models produced worked for filters used with and without a recirculation of effluent nitrate which suggests that a significant degree of nitrification occurred in areas of high heterotroph activity (BOD removal). The simplicity and energy efficiency of the trickling filter process, combined with its capacity for full nitrification and partial denitrification, make the process attractive as a combined process used with pond systems in developing countries where nitrogen removal may be required. Some of these synergies have already been developed with the PETRO~® process in South Africa.
机译:整个1990年代以前在英国泰晤士河地区的工作证明了滴滤工艺能够可靠地全年生产出完全硝化的废水。已重新分析了用于硝化模型推导的原始数据,以研究整个过程中氮的去除程度。在整个滴滤过滤过程中,总氮去除率从0%到50%以上,如果包括初级处理,则计算出的总氮去除率为26-63%。发现脱氮和生物脱氮的程度(不包括细胞同化作用)受BOD负荷,灌溉速度和培养基大小的强烈影响。产生了回归模型,该模型为所使用的数据范围提供了良好的预测关系。生成的模型适用于使用和不使用流出物硝酸盐再循环的过滤器,这表明在高异养生物活性(去除BOD)的区域中发生了明显的硝化作用。滴滤工艺的简单性和能效,加上其完全硝化和部分反硝化的能力,使其成为可能与需要除氮的发展中国家的池塘系统结合使用的诱人工艺。这些协同作用中的一些已经在南非的PETRO〜®工艺中得到开发。

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