Graphite-N Reinforced Sludge Biochar Electrode: A Experimental and Dft Theoretical Analysis of Efficient Evolution and In-Situ Utilization of H2o2

25 Pages Posted: 30 Oct 2023

See all articles by Chenxi Li

Chenxi Li

Tianjin University

Qiu Xiaojie

Tianjin University

Huilin Wan

Tianjin University

Zehao Ma

Tianjin University

Ruotong Jin

Tianjin University

Yingxin Zhao

Tianjin University

Abstract

Abstract Rational reuse of municipal sludge to produce electro-Fenton electrode can not only save resources, but also produce superior peroxide and degradation pollutants simultaneously. Herein, a novel electro-Fenton electrode derived from sludge biochar loaded on Ni foam (SBC@Ni) was constructed via high temperature pyrolysis and chemical coating for efficient H2O2 evolution and pollutant degradation. Systematic experiments and density functional theory calculations (DFT calculation) explained that the production of graphite C and graphite N during high-temperature pyrolysis of municipal sludge can greatly enhance the oxygen reduction reaction of SBC@Ni electrode and promote the evolution of H2O2. And the hybrid heterojunctions, such as FeP, also played a key role in electrocatalytic processes. Notably, the SBC@Ni electrode still exhibited excellent performance after 1000 linear scans and 12 hours of continuous current stimulation, which demonstrated the excellent stability of the electrode. Moreover, SBC@Ni electrode can not only effectively oxidize 4-chlorophenol through the electro-Fenton effect, but also fully mineralize organic matter, indicating promising environmental application. The free radical quenching experiment also revealed that the ·OH is the main active species for 4-CP degradation in SBC@Ni electrofenton system.

Keywords: Keywords: Sludge activated carbon, Electro-Fenton, 4-chlorophenol, DFT calculation, H2O2 evolution.

Suggested Citation

Li, Chenxi and Xiaojie, Qiu and Wan, Huilin and Ma, Zehao and Jin, Ruotong and Zhao, Yingxin, Graphite-N Reinforced Sludge Biochar Electrode: A Experimental and Dft Theoretical Analysis of Efficient Evolution and In-Situ Utilization of H2o2. Available at SSRN: https://ssrn.com/abstract=4617997 or http://dx.doi.org/10.2139/ssrn.4617997

Chenxi Li

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

Qiu Xiaojie

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

Huilin Wan

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

Zehao Ma

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

Ruotong Jin

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

Yingxin Zhao (Contact Author)

Tianjin University ( email )

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