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The heterotrophic-combined-with-autotrophic denitrification process: performance and interaction mechanisms

机译:异养结合自养反硝化过程:性能和相互作用机理

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In this work, the interaction mechanisms between an autotrophic denitrification (AD) and heterotrophic denitrification (HD) process in a heterotrophic-autotrophic denitrification (HAD) system were investigated, and the performance of the HAD system under different S/Ac- molar ratios was also evaluated. The results demonstrated that the heterotrophic-combined-with-autotrophic denitrification process is a promising technology which can remove chemical oxygen demand (COD), sulfide and nitrate simultaneously. The reduction rate of NO3- to NO2- by the HD process was much faster than that of reducing NO2- to N-2, while the reduction rate of NO3- to NO2- by the AD process was slower than that of NO2- to N-2. Therefore, the AD process could use the surplus NO2- produced by the HD process. This could alleviate the NO2--N accumulation and increase the denitrification rate. In addition, the inhibition effects of acetate on AD bacteria and sulfide on HD were observed, and the inhibition was compensated by the promotion effects on NO2-. Therefore, the processes of AD and HD seem to react in parallel, without disturbing each other, in our HAD system.
机译:在这项工作中,研究了异养-自养反硝化(HAD)系统中自养反硝化(AD)和异养反硝化(HD)过程之间的相互作用机理,并且研究了在不同S / Ac-摩尔比下该HAD系统的性能。也进行了评估。结果表明,异养结合自养反硝化工艺是一种有前途的技术,可以同时去除化学需氧量(COD),硫化物和硝酸盐。 HD工艺将NO3-还原为NO2-的速率比将NO2-还原为N-2的速率要快得多,而AD工艺通过NO3-还原为NO2-的速率要比NO2-还原为NO的慢。 -2。因此,AD工艺可以使用HD工艺产生的多余NO2。这可以减轻NO2--N的积累并提高反硝化率。另外,观察到乙酸盐对AD细菌的抑制作用和硫化物对HD的抑制作用,并且该抑制作用被对NO 2-的促进作用所补偿。因此,在我们的HAD系统中,AD和HD的进程似乎是并行响应的,而不会互相干扰。

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