| Literature DB >> 33582520 |
Zeyu Wang1, Luyao Dai2, Jiachao Yao3, Tianjiao Guo3, Dzmitry Hrynsphan4, Savitskaya Tatsiana4, Jun Chen5.
Abstract
Aiming at the accumulation of NO2--N and N2O during denitrification process, this work focused to improve the denitrification performance by Pd-Fe embedded multi-walled carbon nanotubes (MWCNTs). The main conclusions were as follows: 30 mg/L Pd-Fe/MWCNTs have shown an excellent promotion on denitrification (completely TN removal at 36 h). Meanwhile, enzyme activity results indicated that the generation of NO2--N, NH4+-N by Pd-Fe/MWCNTs led the occur of short-cut denitrification by increasing 203.9% the nitrite reductase activity. Furthermore, electrochemical results and index correlation analysis confirmed that the electron exchange capacity (1.401 mmol eg-1) of Pd-Fe/MWCNTs was positively related to nitrite reductase activity, indicating its crucial role in electron transport activity (0.46 μg O2/(protein·min) at 24 h) during denitrification process by Pd-Fe/MWCNTs played a role of chemical reductant and redox mediator.Entities:
Keywords: Denitrification; Electrochemical; Electron transport; Enzyme activity; Fe-Pd/MWCNTs
Year: 2021 PMID: 33582520 DOI: 10.1016/j.biortech.2021.124785
Source DB: PubMed Journal: Bioresour Technol ISSN: 0960-8524 Impact factor: 9.642