首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Optimization of C/N and current density in a heterotrophic/ biofilm-electrode autotrophic denitrification reactor (HAD-BER)
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Optimization of C/N and current density in a heterotrophic/ biofilm-electrode autotrophic denitrification reactor (HAD-BER)

机译:异养/生物膜电极自养反硝化反应器(HAD-BER)中C / N和电流密度的优化

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摘要

In this study, central composite design (CCD) and response surface methodology (RSM) were applied to optimize the C/N and current density in a heterotrophic/biofilm-electrode autotrophic denitrification reactor (HAD-BER). Results showed that nitrate could be effectively reduced over a wide range of C/Ns (0.84-1.3535) and current densities (96.8-370.0 mA/m~2); however, an optimum C/N of 1.13 and optimum current density of 239.6 mA/m~2 were obtained by RSM. Moreover, the HAD-BER performance under the optimum conditions resulted in almost 100% nitrate-N removal efficiency and low nitrite-N and ammonia-N accumulation. Furthermore, under the optimum conditions, H_2 generated from water electrolysis matched the CO_2 produced by heterotrophic denitrification by stoichiometric calculation. Therefore, CCD and RSM could be used to acquire optimum operational conditions and improve the nitrate removal efficiency and energy consumption in the HAD-BER.
机译:在这项研究中,中央复合设计(CCD)和响应面方法(RSM)用于优化异养/生物膜电极自养反硝化反应器(HAD-BER)中的C / N和电流密度。结果表明,硝酸盐可以在很宽的C / Ns(0.84-1.3535)和电流密度(96.8-370.0 mA / m〜2)范围内有效还原;然而,通过RSM获得的最佳C / N为1.13,最佳电流密度为239.6 mA / m〜2。此外,在最佳条件下的HAD-BER性能导致几乎100%的硝酸盐-N去除效率和较低的亚硝酸盐-N和氨-N积累。此外,在最佳条件下,通过化学计量计算,水电解产生的H_2与异养脱氮产生的CO_2相匹配。因此,CCD和RSM可用于获取最佳操作条件并提高HAD-BER中的硝酸盐去除效率和能耗。

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