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The effect of C/N ratio on nitrogen removal in a bioelectrochemical system

机译:碳氮比对生物电化学系统脱氮的影响

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摘要

The effect of C/N ratios of 2, 2.7, and 3.5 on nitrogen removal in a bioelectrochemical system (BES) was investigated. Starch was used as a carbon source for the electrogenesis phenomenon we observed in a previous study. The results showed that an increased C/N ratio helped the BES to remove nitrate and depress nitrite accumulation but did not increase autotrophic denitrification. Nitrate and total nitrogen removal were increased from 0.69±0.02gm~(-3)h~(-1) to 1.09±0.16gm~(-3)h~(-1), and from 0.52±0.08gm~(-3)h~(-1) to 0.97±0.06gm~(-3)h~(-1), respectively, when the C/N ratio was increased from 2.0 to 3.5. However, the autotrophic denitrification ratio decreased from 72.74% to 50.23% with the same increase in the C/N ratio. High C/N ratios postponed the excretion of soluble microbial products and increased electrogenesis, but did not improve the anode transformation efficiency.
机译:研究了C / N比为2、2.7和3.5对生物电化学系统(BES)中脱氮的影响。淀粉被用作我们先前研究中观察到的电生成现象的碳源。结果表明,增加的C / N比有助于BES去除硝酸盐并抑制亚硝酸盐积累,但不会增加自养反硝化作用。硝酸盐和总氮去除量从0.69±0.02gm〜(-3)h〜(-1)增加到1.09±0.16gm〜(-3)h〜(-1),从0.52±0.08gm〜(-3)增加当C / N比从2.0增加到3.5时,h〜(-1)分别为0.97±0.06gm〜(-3)h〜(-1)。但是,自养反硝化率从72.74%下降到50.23%,而C / N比率却保持不变。高C / N比可推迟可溶性微生物产物的排泄并增加电生成,但不会提高阳极转化效率。

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