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首页> 外文期刊>Water Science and Technology >Outcomes of a 2-year investigation on enhanced biological nutrients removal and trace organics elimination in membrane bioreactor (MBR)
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Outcomes of a 2-year investigation on enhanced biological nutrients removal and trace organics elimination in membrane bioreactor (MBR)

机译:膜生物反应器(MBR)中增强的生物营养去除和痕量有机物消除的2年研究结果

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Two configurations of membrane bioreactors, were identified to achieve enhanced biological phosphorus and nitrogen removal, and assessed over more than two years with two parallel pilot plants of 2 m(3) each. Both configurations included an anaerobic zone ahead of the biological reactor, and differed by the position of the anoxic zone: standard pre-denitrification, or post-denitrification without dosing of carbon source. Both configurations achieved improved phosphorus removal. The goal of 50 mu gP/L in the effluent could be consistently achieved with two types of municipal wastewater, the second site requiring a low dose of ferric salt ferric salt < 3 mgFe/L. The full potential of biological phosphorus removal could be demonstrated during phosphate spiking trials, where up to 1 mg of phosphorus was biologically eliminated for 10 mg BOD5 in the influent. The post-denitrification configuration enabled a very good elimination of nitrogen. Daily nitrate concentration as low as 1 mgN/L could be monitored in the effluent in some periods. The denitrification rates, greater than those expected for endogenous denitrification, could be accounted for by the use of the glycogene pool, internally stored by the denitrifying microorganisms in the anaerobic zone. Pharmaceuticals residues and steroids were regularly monitored on the two parallel MBR pilot plants during the length of the trials, and compared with the performance of the Berlin-Ruhleben WWTP. Although some compounds such as carbamazepine were persistent through all the systems, most of the compounds could be better removed by the MBR plants. The influence of temperature, sludge age and compound concentration could be shown, as well as the significance of biological mechanisms in the removal of trace organic compounds.
机译:膜生物反应器的两种配置,已确定可实现提高的生物磷和氮去除率,并在两年多的时间里对两个平行的中试工厂分别进行了评估,每个工厂的面积为2 m(3)。两种配置都包括在生物反应器之前的厌氧区,并且在缺氧区的位置上有所不同:标准的前脱氮或后脱氮而不添加碳源。两种配置均实现了更好的除磷效果。两种类型的市政废水可以始终达到50μgP / L的目标,第二种要求低剂量的三价铁盐铁盐<3 mgFe / L。在磷酸盐加标试验中可以证明生物除磷的全部潜力,进水中10 mg BOD5可以生物去除多达1 mg的磷。后反硝化配置能够很好地消除氮。在某些时期,废水中的每日硝酸盐浓度可低至1 mgN / L。反硝化率高于预期的内源性反硝化率,可以通过使用糖原池来解释,该池由反硝化微生物在厌氧区内部存储。在试验期间,定期在两个平行的MBR中试工厂上监测药物残留和类固醇,并与Berlin-Ruhleben WWTP的性能进行比较。尽管某些化合物(例如卡马西平)在所有系统中均具有持久性,但MBR植物可以更好地去除大多数化合物。可以显示温度,污泥龄和化合物浓度的影响,以及生物学机理对去除痕量有机化合物的意义。

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