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Nitrate Removal Rate in a Continuous Column Denitrification Reactor Using Hydrogen Generated by Electrolysis with Carbon Anodes and Stainless Cathodes

机译:使用碳阳极和不锈阴极电解产生氢的连续柱反硝化反应器中的硝酸盐去除率

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摘要

An autotrophic continuous denitrification process, using hydrogen generated by electrolysis with activated carbon anodes, were experimentally demonstrated to be an effective nitrate removal process. Several fixed bed columns with polypropylene packing and honey-come shaped activated carbon anodes and stainless rod cathodes were set in thermostat chamber of 30°C, and then potassium nitrate enriched tap water, nitrogen concentration of 30mg-N·l-1, was supplied at various flow rates and electric currents. Although the anode is in the same column where microbes grow, sufficient nitrate removal was observed. For example, 94% of nitrate was removed at the HRT of as short as 1.8h for an electrical current of 6mA. A model assuming successive nitrate and nitrite reductions and plug-flow process, nitrate reduction rate=k1[NO3-][H2], and nitrite reduction rate=k2[NO2-][H2]1.5 was constructed. Calculated results with k1=1.3l·mmol-1·h-1 and k2=3.3l1.5·mmol-1.5·h-1 agreed well with the all the experimental results.
机译:通过使用活性炭阳极电解产生的氢气,自养连续反硝化工艺被证明是一种有效的硝酸盐去除工艺。在30°C的恒温槽中放置几个​​固定有聚丙烯填料,蜂窝状活性炭阳极和不锈钢棒状阴极的固定床柱,然后提供富含硝酸钾的自来水,氮浓度为30mg-N·l-1。在各种流速和电流下。尽管阳极与微生物生长在同一列中,但观察到硝酸盐已被充分去除。例如,对于6mA的电流,在短至1.8h的HRT去除了94%的硝酸盐。建立了一个假设硝酸盐和亚硝酸盐连续还原和活塞流过程,硝酸盐还原率= k1 [NO3-] [H2]和亚硝酸盐还原率= k2 [NO2-] [H2] 1.5的模型。 k1 = 1.3l·mmol-1·h-1和k2 = 3.3l1.5·mmol-1.5·h-1的计算结果与所有实验结果吻合良好。

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