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Behavior of autotrophic denitrification and heterotrophic denitrification in an intensified biofilm-electrode reactor for nitrate-contaminated drinking water treatment

机译:在硝酸盐污染的饮用水强化生物膜电极反应器中自养反硝化和异养反硝化的行为

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An intensified biofilm-electrode reactor (IBER) was developed to treat nitrate-contaminated drinking water. Different running conditions were conducted to investigate the behavior of autotrophic denitrification (AD) and heterotrophic denitrification (HD) in the IBER. In AD process, the nitrate nitrogen coulomb-reduction rate was used to evaluate the performance of the reactor. The maximum NO3--N removal efficiency was 6.8% at the current of 60mA, while nitrate nitrogen coulomb-reduction rate was 0.024mgC ~(-1). The optimum conditions for HD process were C/N=0.8 and HRT=8h, under which complete NO3--N removal and no NO2--N accumulation were observed. With the cooperative effect of AD and HD in the heterotrophic and autotrophic denitrification (HAD) process, large treatment capacity, high denitrification efficiency, and low nitrite and ammonia accumulation were achieved. The results proved that HAD process was superior to single AD and HD for nitrate removal in the IBER.
机译:开发了强化生物膜电极反应器(IBER)来处理被硝酸盐污染的饮用水。进行了不同的运行条件以研究IBER中的自养反硝化(AD)和异养反硝化(HD)的行为。在AD工艺中,硝酸盐氮库仑的还原速率用于评价反应器的性能。在60mA的电流下,最大的NO3--N去除效率为6.8%,而硝酸盐氮库仑还原速率为0.024mgC〜(-1)。 HD工艺的最佳条件是C / N = 0.8和HRT = 8h,在此条件下,NO3--N完全去除且没有NO2--N积累。利用AD和HD在异养和自养反硝化(HAD)过程中的协同作用,实现了大处理能力,高反硝化效率以及低亚硝酸盐和氨积累。结果证明,在IBER中,HAD工艺在硝酸盐去除方面优于单一AD和HD。

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