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Using the combined bioelectrochemical and sulfur autotrophic denitrification system for groundwater denitrification

机译:结合使用生物电化学和硫自养反硝化系统进行地下水反硝化

摘要

A combined bioelectrochemical and sulfur autotrophic denitrification system (CBSAD) was evaluated to treat a groundwater with nitrate contamination (20.9-22.0 mg NO(3)(-)-N/L). The reactor was operated continuously for several months with groundwater to maximize treatment efficiency under different hydraulic retention times (HRT) and electric currents, The denitrification rate of sulfur autotrophic part followed a half-order kinetics model. Moreover, the removal efficiency of bioelectrochemical part depended on the electric current. The reactor could be operated efficiently at the HRT ranged from 4.2 to 2.1 h (corresponding nitrogen volume-loading rates varied from 0.12 to 0.24 kg N/m(3) d; and optimum current ranged from 30 to 1000 mA), and the NO(3)(-)-N removal rate ranged from 95% to 100% without NO(3)(-)-N accumulation. The pH of effluent was satisfactorily adjusted by bioelectrochemical part, and the sulfate concentration of effluent was lower than 250 mg /L, meeting the drinking water standard of China EPA. (c) 2008 Elsevier Ltd. All rights reserved.
机译:结合生物电化学和硫自养反硝化系统(CBSAD)进行了评估,以处理硝酸盐污染(20.9-22.0 mg NO(3)(-)-N / L)的地下水。反应器与地下水连续运行数月,以在不同的水力停留时间(HRT)和电流下最大化处理效率。硫自养部分的脱氮率遵循半阶动力学模型。此外,生物电化学部分的去除效率取决于电流。反应器可以在4.2到2.1 h的HRT下有效运行(相应的氮气体积加载速率从0.12到0.24 kg N / m(3)d改变;最佳电流在30到1000 mA范围内)和NO (3)(-)-N去除率从95%到100%不具有NO(3)(-)-N积累。通过生化部分对废水的pH值进行了满意的调节,废水中的硫酸盐浓度低于250 mg / L,符合中国国家环境保护局的饮用水标准。 (c)2008 Elsevier Ltd.保留所有权利。

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