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Nitrate and bromate removal by autotrophic and heterotrophic denitrification processes: batch experiments

机译:通过自养和异养反硝化工艺去除硝酸盐和溴酸盐:分批实验

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摘要

The effects of various parameters on bromate reduction were tested using lab-scale batch reactors with sulfur based autotrophic and methanol based heterotrophic denitrification processes. The initial bromate (BrO3) concentration of 100 and 500 μg/L was completely reduced and bromide (Br-) was produced stoichiometrically from bromate in all batch reactors. In all experiments, nitrate was completely reduced to below detection limit. Kinetic studies showed that the sulfur-based autotrophic nitrate reduction rate increased with increasing initial nitrate concentration. At stoichiometrically sufficient methanol concentration as an external carbon source, nitrate and bromate were reduced to below US EPA drinking water limits in heterotrophic denitrification conditions. The methanol was completely depleted at the end of the heterotrophic operation conditions.
机译:使用实验室规模的间歇式反应器,以硫为基础的自养和甲醇为基础的异养反硝化工艺,测试了各种参数对溴酸盐还原的影响。完全降低了100和500μg/ L的初始溴酸盐(BrO3 )浓度,并且在所有分批反应器中从溴化物化学计量生产了溴化物(Br -)。在所有实验中,硝酸盐都被完全还原到检测限以下。动力学研究表明,基于硫的自养硝酸盐还原速率随初始硝酸盐浓度的增加而增加。在化学计量上,足够的甲醇浓度作为外部碳源时,在异养反硝化条件下,硝酸盐和溴酸盐降至低于美国EPA饮用水限值。在异养操作条件结束时,甲醇被完全耗尽。

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