Enhanced denitrification by graphene oxide–modified cathode for the secondary effluent of wastewater treatment plants in three-dimensional biofilm electrode reactors

Author:

Xue Ying12,Zhang Chaojie12,Li Sibo12,Zhou Qi12,Zhou Xuefei12,Zhang Yalei12

Affiliation:

1. a State Key Laboratory of Pollution Control and Resources Reuse, College of Environmental Science and Engineering, Tongji University, Shanghai 200092, China

2. b Shanghai Institute of Pollution Control and Ecological Security, Shanghai 200092, China

Abstract

ABSTRACT In this study, a novel three-dimensional biofilm electrode reactor (3D-BER) with a graphene oxide (GO)–modified cathode was developed to enhance the denitrification performance of secondary effluent from wastewater treatment plants (SEWTPs). The effects of different hydraulic retention times (HRTs) and currents on the 3D-BER were explored. The results indicated that at the optimal HRT of 4 h and current of 350 mA/m2, the 3D-BER with GO-modified cathode had a higher denitrification rate (2.40 ± 0.1 mg TN/L/h) and less accumulation of intermediate products, especially with 3.34% total nitrogen (TN) molar conversion to N2O. The GO-modified cathode offered a large biocompatible specific surface area and enhanced the conductivity, which favored microbial growth and increased electron transfer efficiency and extracellular enzyme activities. Moreover, the activity of nitrite reductase increased more than that of nitrate reductase to accelerate nitrite reduction, thus facilitating the denitrification process. The proposed 3D-BER provided an effective solution to elevate tertiary denitrification in the SEWTP.

Funder

Key Technologies Research and Development Program

Publisher

IWA Publishing

Reference64 articles.

1. Nitrite effect on nitrous oxide emission from denitrifying activated sludge;Process Biochemistry,2008

2. Bacterial denitrification of waste water stimulated by constant electric field;Biochemical Engineering Journal,2004

3. Effects of process operating conditions on the autotrophic denitrification of nitrate-contaminated groundwater using bioelectrochemical systems;Science of the Total Environment,2018

4. Denitrification and aerobic respiration, hybrid electron transport chains and co-evolution;Biochimica et Biophysica Acta – Bioenergetics,2013

5. Response of a three dimensional bioelectrochemical denitrification system to the long-term presence of graphene oxide;Bioresource Technology,2016

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