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首页> 外文期刊>Water Science and Technology >Nitrate removal by simultaneous sulfur utilizing autotrophic and heterotrophic denitrification under different organics and alkalinity conditions: batch experiments
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Nitrate removal by simultaneous sulfur utilizing autotrophic and heterotrophic denitrification under different organics and alkalinity conditions: batch experiments

机译:在不同有机物和碱度条件下利用自养和异养反硝化同时脱硫去除硝酸盐的方法:分批实验

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The effect of various organic compounds were tested using lab-scale batch reactors. At sufficient alkalinity, the initial nitrate nitrogen concentration of 100 mg/L was completely reduced in all batch reactors. Sulfate production decreased by the addition of organics. The concentration range of organics used in this experiment did not inhibit autotrophic denitrification except for propionate. Propionate, inhibited autotrophic denitrification a little, indicated by a lower sulfate production rate. Biomass in suspension increased with higher initial organic concentrations, showing higher DOC consumption. As the concentration of organics increased, alkalinity increased accordingly. Under the conditions of low alkalinity, in the case of a control reactor without organics, only about 30% of the initial nitrate was reduced. With half the theoretically required dosage of methanol, the denitrification rates increased slightly. When ethanol, acetate, and propionate were used, denitrification went to completion. When excess organics was added, however, sulfate production was significantly decreased. Interestingly, even when small amounts of organics were added, autotrophic denitrification was promoted as indicated by the sulfate production. [References: 15]
机译:使用实验室规模的间歇反应器测试了各种有机化合物的作用。在足够的碱度下,所有间歇反应器中的初始硝酸盐氮浓度100 mg / L都会完全降低。通过添加有机物,硫酸盐产量下降。除丙酸酯外,本实验中所用有机物的浓度范围不抑制自养反硝化作用。丙酸盐略微抑制了自养反硝化作用,这表明硫酸盐的生产率较低。悬浮液中的生物量随着初始有机物浓度的升高而增加,表明DOC消耗量增加。随着有机物浓度的增加,碱度相应增加。在低碱度的条件下,在没有有机物的对照反应器的情况下,仅还原了约30%的初始硝酸盐。用理论上需要的甲醇量的一半,反硝化速率略有提高。当使用乙醇,乙酸盐和丙酸酯时,反硝化完成。然而,当添加过量的有机物时,硫酸盐的产生显着降低。有趣的是,即使添加少量有机物,硫酸盐的产生也能促进自养反硝化作用。 [参考:15]

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