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高性能流化床生物膜反应器的硝酸盐去除特性

Nitrate removal characteristics of high performance fluidized-bed biofilm reactors.

作者信息

Rabah Fahid K J, Dahab Mohamed F

机构信息

Department of Civil Engineering, University of Nebraska-Lincoln, W348 Nebraska Hall, Lincoln, NE 68588, USA.

出版信息

Water Res. 2004 Oct;38(17):3719-28. doi: 10.1016/j.watres.2004.07.002.

Abstract

Two laboratory-scale high performance fluidized bed biofilm reactors (FBBR) with sand as the biofilm carrier were used to investigate the denitrification of high-strength nitrate wastewater with specific emphasis on the effect the nitrogen loading rate and the superficial velocity (V(s)). The results demonstrated that the FBBR system is capable of efficiently handling an exceptionally high nitrate nitrogen concentration of 1000 mg N/L. At a loading rate of 6.3 kg-N/m(3)(bed).d almost complete denitrification was achieved with a removal efficiency of 99.8% and an effluent concentration of 2mg N/L at V(s) values of 45, 55 and 65 m/h. The maximum efficient loading rate (R(max)) at which the US drinking water nitrate-nitrogen standard concentration of 10mg N/L would be exceeded was found to be a function of the applied V(s). The R(max) was found to be 12 kg-N/m(3)(bed).d at a V(s) value of 45 m/h. As V(s) was increased to 55 and 65 m/h, the optimum R(max) dropped to 9.5 and 8 kg-N/m(3)(bed).d, respectively. Higher denitrification rates were achieved at relatively lower V(s). However, there is a minimum practical velocity below which agglomeration of biomass would occur. The suspended solids concentration in the effluent was below 30 mg/L throughout the study.

摘要

使用两个以沙子为生物膜载体的实验室规模的高性能流化床生物膜反应器(FBBR),研究高浓度硝酸盐废水的反硝化作用,特别强调氮负荷率和表观流速(V(s))的影响。结果表明,FBBR系统能够有效处理1000 mg N/L的超高硝酸盐氮浓度。在负荷率为6.3 kg-N/m³(床层)·d时,当V(s)值为45、55和65 m/h时,几乎实现了完全反硝化,去除效率为99.8%,出水浓度为2mg N/L。发现超过美国饮用水硝酸盐氮标准浓度10mg N/L的最大有效负荷率(R(max))是所应用的V(s)的函数。在V(s)值为45 m/h时,R(max)为12 kg-N/m³(床层)·d。当V(s)增加到55和65 m/h时,最佳R(max)分别降至9.5和8 kg-N/m³(床层)·d。在相对较低的V(s)下实现了更高的反硝化率。然而,存在一个最小实际流速,低于该流速会发生生物质团聚。在整个研究过程中,出水的悬浮固体浓度低于30 mg/L。

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