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电藻-活性污泥膜生物反应器中的污水治理与膜污染控制。

Wastewater treatment and fouling control in an electro algae-activated sludge membrane bioreactor.

机构信息

Environmental Engineering Program, National Graduate School of Engineering, University of the Philippines, 1101 Diliman, Quezon City, Philippines.

Sanitary Environmental Engineering Division (SEED), Department of Civil Engineering, University of Salerno, 84084 Fisciano, Italy.

出版信息

Sci Total Environ. 2021 Sep 10;786:147475. doi: 10.1016/j.scitotenv.2021.147475. Epub 2021 Apr 30.

Abstract

The effect of addition of algae to activated sludge as active biomass in membrane bioreactors (MBRs) and electro-MBRs (e-MBRs) for wastewater remediation was examined in this study. The performances of Algae-Activated Sludge Membrane Bioreactor (AAS-MBR) and electro Algae-Activated Sludge Membrane Bioreactor (e-AAS-MBR) were compared to those observed in conventional MBR and e-MBR, which were previously reported and utilized activated sludge as biomass. The effect of application of electric field was also examined by the comparison of performances of e-AAS-MBR and AAS-MBR. Similar chemical oxygen demand (COD) reduction efficiencies of AAS-MBR, e-AAS-MBR, MBR, and e-MBR (98.35 ± 0.35%, 99.12 ± 0.08%, 97.70 ± 1.10%, and 98.10 ± 1.70%, respectively) were observed. The effect of the algae-activated sludge system was significantly higher in the nutrient removals. Ammoniacal nitrogen (NH-N) removal efficiencies of AAS-MBR and e-AAS-MBR were higher by 43.89% and 26.61% than in the conventional MBR and e-MBR, respectively. Phosphate phosphorous (PO-P) removals were also higher in AAS-MBR and e-AAS-MBR by 6.43% and 2.66% than those in conventional MBR and e-MBR. Membrane fouling rates in AAS-MBR and e-AAS-MBR were lower by 57.30% and 61.95% than in MBR and e-MBR, respectively. Lower concentrations of fouling substances were also observed in the reactors containing algae-activated sludge biomass. Results revealed that addition of algae improved nutrient removal and membrane fouling mitigation. The study also highlighted that the application of electric field in the e-AAS-MBR enhanced organic contaminants and nutrients removal, and fouling rate reduction.

摘要

本研究考察了在膜生物反应器(MBR)和电膜生物反应器(e-MBR)中添加藻类作为活性生物量对废水修复的影响。将藻类-活性污泥膜生物反应器(AAS-MBR)和电藻类-活性污泥膜生物反应器(e-AAS-MBR)的性能与先前报道并利用活性污泥作为生物量的传统 MBR 和 e-MBR 进行了比较。还通过比较 e-AAS-MBR 和 AAS-MBR 的性能来考察电场应用的效果。AAS-MBR、e-AAS-MBR、MBR 和 e-MBR 的化学需氧量(COD)去除效率相似(分别为 98.35±0.35%、99.12±0.08%、97.70±1.10%和 98.10±1.70%)。藻类-活性污泥系统在养分去除方面的效果明显更高。AAS-MBR 和 e-AAS-MBR 的氨氮(NH-N)去除效率分别比传统 MBR 和 e-MBR 高 43.89%和 26.61%。AAS-MBR 和 e-AAS-MBR 的磷酸盐磷(PO-P)去除率也分别比传统 MBR 和 e-MBR 高 6.43%和 2.66%。AAS-MBR 和 e-AAS-MBR 的膜污染速率比 MBR 和 e-MBR 分别低 57.30%和 61.95%。在含有藻类-活性污泥生物量的反应器中,也观察到较低浓度的污染物质。结果表明,添加藻类可提高养分去除率和缓解膜污染。该研究还强调了在 e-AAS-MBR 中应用电场可增强有机污染物和养分的去除以及降低污染速率。

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