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Controlling sludge settleability in the oxidation ditch process

机译:在氧化沟工艺中控制污泥沉降能力

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This paper describes an investigation aimed at developing an operating technique for controlling sludge settleability in the oxidation ditch form of the nitrification denitrification activated sludge process. It was hypothesized that specific sludge volume index (SSVI) is lowest at an optimum process anoxic fraction and increases at higher and lower fractions. Using effluent ammoniamitrate ratio as a surrogate for anoxic fraction, it was found that a simple empirical model based on a three solids retention time moving average nitrogen ratio was able to replicate the long-term SSVI variations in two independent oxidation ditches at a full-scale plant. Operating data from a second oxidation ditch plant during periods when a prefermenter was on- or off-line showed that SSVI also varies with RBCOD, greater RBCOD giving lower SSVI. It was concluded that best settleability occurs at about the same anoxic fraction as lowest effluent total nitrogen concentration, with an ammonia:nitrate ratio of about 1. An operating rule of thumb is to use dissolved oxygen control to maintain effluent ammonia and nitrate nitrogen concentrations about equal. A third oxidation ditch plant deliberately operated in this manner achieved 15-month median operating values for SSVI of 60 mL/g and for effluent ammonia, nitrate and total N, respectively, of 0.2, 0.3 and 2.0 mgN/L.
机译:本文描述了一项研究,旨在开发一种操作技术,以控制硝化反硝化活性污泥工艺中氧化沟形式的污泥沉降能力。假设在最佳工艺缺氧分数下,特定污泥体积指数(SSVI)最低,而在较高和较低的分数下,污泥体积指数增加。使用废水中的氨基甲酸酯比率作为缺氧分数的替代物,发现基于三固相保留时间移动平均氮比率的简单经验模型能够在两个独立的氧化沟中全面复制长期SSVI变化厂。在某精炼厂在线或脱机期间,来自第二个氧化沟工厂的运行数据表明,SSVI也随RBCOD的变化而变化,RBCOD越大,SSVI越低。结论是,最佳的沉降性发生在与最低的废水总氮浓度相同的缺氧分数下,氨:硝酸盐比约为1。经验法则是使用溶解氧控制以保持废水的氨氮和硝酸盐氮浓度约为等于。故意以这种方式运行的第三氧化沟装置的SSVI的15个月中值运行值为60 mL / g,氨,硝酸盐和总氮的流出量分别为0.2、0.3和2.0 mgN / L。

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