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首页> 外文期刊>Separation and Purification Technology >Control of pH during water denitrification in an upflow bio-electrochemical reactor (UBER) using a pumparound system
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Control of pH during water denitrification in an upflow bio-electrochemical reactor (UBER) using a pumparound system

机译:使用泵送系统控制上流生物电化学反应器(UBER)中水反硝化过程中的pH

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In this study a new reactor design is proposed to control the pH during the bio-electrochemical denitrification process. A previously developed UBER was modified by including a pumparound system. With the pumparound system a portion of the treated water is continuously withdrawn from the UBER into a CO2 sparging bottle to decrease its pH to about 6.1 ±0.1, before being returned to the cathode zone where denitrification process takes place. Continuous denitrification was studied with a HRT of 24 h applying an electric current in the range of 15-25 mA. The effects of circulation flow rate (F_c) on the pH and on the concentrations of nitrate and nitrite ions in the effluent were investigated. The pumparound system succeeded to stabilize the cathode pH around 7-8 through alteration of circulation flow rate (F_c). Complete denitrification with no trace of nitrite was therefore achieved at circulation flow rate of 0.7 mL/min and electric current 25 mA.A further investigation in absence of bicarbonate sodium resulted in a satisfactory nitrate treatment showing that the carbon dioxide gas dissolved in the CO2 sparging bottle supplied enough carbon for the autohydrogenotrophic microorganisms.
机译:在这项研究中,提出了一种新的反应器设计,以控制生物电化学反硝化过程中的pH值。以前开发的UBER通过包括抽水系统进行了修改。使用泵送系统,一部分处理后的水会从UBER连续抽入CO2喷射瓶中,以将其pH值降至6.1±0.1左右,然后再返回进行反硝化的阴极区。研究了连续反硝化作用,其HRT为24 h,施加的电流为15-25 mA。研究了循环流量(F_c)对pH值以及废水中硝酸根和亚硝酸根离子浓度的影响。泵送系统通过改变循环流速(F_c)成功地将阴极pH值稳定在7-8左右。因此在0.7 mL / min的循环流量和25 mA的电流下实现了完全的反硝化,没有亚硝酸盐。进一步的研究在不存在碳酸氢钠的情况下进行了令人满意的硝酸盐处理,结果表明二氧化碳中溶解了二氧化碳气体瓶子为自氢营养型微生物提供了足够的碳。

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