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Effect of Hydraulic Retention Time on the Performance of a Compact Moving Bed Biofilm Reactor for Effluent Polishing of Treated Sewage

Jamal Ali Kawan, Fatihah Sujá, Sagor Kumar Pramanik, Arij Yusof, Rakmi Abdul Rahman, Hassimi Abu Hasan

2022Water27 citationsDOIOpen Access PDF

Abstract

Treated effluent from a wastewater treatment plant can be further reused as a water resource for a water supply treatment plant. In this case, the treated sewage gathered in the study of the Class V National Water Quality Standard (NWQS) of Malaysia would be treated for use as a water resource for a water treatment plant. In a moving bed biofilm reactor (MBBR) with a 500-L working volume, organic pollutants, undesirable nutrients, and bacteria were removed without disinfectant. At 24-h hydraulic retention time (HRT), the maximum removal efficiency of 5-day biological oxygen demand, ammonia–nitrogen (NH3-N), and total phosphorus were 71%, 48%, and 12%, respectively. The biofilm thickness, which was captured using scanning electron microscopy, increased from 102.6 μm (24-h HRT) to 297.1 μm (2-h HRT). A metagenomic analysis using 16S rRNA showed an abundance of anaerobic bacteria, especially from the Proteobacteria phylum, which made up almost 53% of the total microbes. MBBR operated at 24-h HRT could improve effluent quality, as its characteristics fell into Class IIA of the NWQS of Malaysia, with the exception of the NH3-N content, which indicated that the effluent needed conventional treatment prior to being reused as potable water.

Topics & Concepts

EffluentHydraulic retention timeMoving bed biofilm reactorSewage treatmentEnvironmental scienceWastewaterPulp and paper industryChemical oxygen demandSewageWater qualityNutrientBiofilmEnvironmental engineeringEnvironmental chemistryChemistryBacteriaBiologyEcologyOrganic chemistryGeneticsEngineeringWastewater Treatment and Nitrogen RemovalWater Treatment and DisinfectionConstructed Wetlands for Wastewater Treatment
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