Does influent C/N ratio affect pollutant removal and greenhouse gas emission in wastewater ecological soil infiltration systems with/without intermittent aeration?

Author:

Pang Junling1,Yang Mo1,Tong Deli1,Fu Xu1,Huang Linli1,Sun Bo1,Pan Jing1

Affiliation:

1. College of Life Science, Shenyang Normal University, Shenyang 110034, China

Abstract

Abstract Wastewater ecological soil infiltration system (WESIS) is a land treatment technology for decentralized wastewater treatment that has been applied all over the world. In this study, the pollutant removal, emission of greenhouse gases (GHGs) and functional gene abundances with different influent C/N ratios were evaluated in WESISs with/without intermittent aeration. Intermittent aeration and influent C/N ratio affect pollutant removal and GHG emission. Increased influent C/N ratio led to high total nitrogen (TN) removal, low CH4 and N2O emission in the aerated WESIS, which was different from the non-aerated WESIS. High average removal efficiencies of chemical oxygen demand (COD) (94.8%), NH4+-N (95.1%), TN (91.2%), total phosphorus (TP) (91.1%) and low emission rates for CH4 (27.2 mg/(m2 d)) and N2O (10.5 mg/(m2 d)) were achieved with an influent C/N ratio of 12:1 in the aerated WESIS. Intermittent aeration enhanced the abundances of bacterial 16S rRNA, amoA, nxrA, narG, napA, nirK, nirS, qnorB, nosZ genes and decreased the abundances of the mcrA gene, which are involved in pollutant removal and GHG emission. Intermittent aeration would be an effective alternative to achieving high pollutant removal and low CH4 and N2O emission in high influent C/N ratio wastewater treatment.

Funder

National Natural Science Foundation of China

Innovative Talents Project of Liaoning Education Department

Liaoning BaiQianWan Talents Program

Natural Science Foundation of Liaoning

Shenyang Science and Technology Project

Shenyang Young and Middle-aged Science and Technology Innovation Talents Project

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

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