Endogenous Nitrogen-Doped Carbon Material Activation of Peroxydisulfate for Efficient Sulfamethoxazole Degradation

34 Pages Posted: 15 May 2024

See all articles by Zhan Cen

Zhan Cen

South China Agricultural University

Chengyang Tan

South China Agricultural University

Zhuobiao Ni

South China Agricultural University

Yu Zhu

South China Agricultural University

Xixian Yang

South China Agricultural University

Xin Cai

South China Agricultural University

Chuanyi Xu

South China Agricultural University

Yueping Fang

South China Agricultural University

Rongliang Qiu

South China Agricultural University

Yingju Liu

South China Agricultural University

Shengsen Zhang

South China Agricultural University

Abstract

An endogenous nitrogen-doped carbon (ENC) was synthesized to activate peroxydisulfate (PDS) for Sulfamethoxazole (SMX) removal using graphitic carbon nitride as the raw material. The characterization of the surface properties of ENC demonstrated that ENC is rich in functional groups and mesoporous structure, coupled with a very large specific surface area (1034.6 m2·g-1). The ENC/PDS system demonstrated up to 98.5% degradation capability of SMX within 30 min and maintained over 80% in a complex aqueous environment. Further investigation of the intrinsic mechanism of SMX decomposition by ENC/PDS confirmed the dominant roles of surface-bound radicals and mediated electron transfer, with surface-bound SO₄·⁻ and a transient active complex (PDS/ENC*) identified as the key reactive species. This study significantly broadens the scope of nitrogen-doped carbon materials in environmental treatment by conducting an extensive investigation of the ENC/PDS/SMX system.

Keywords: Nitrogen-doped carbon materials, peroxydisulfate activation, Sulfamethoxazole degradation, surface-bound radicals, mediated electron transfer

Suggested Citation

Cen, Zhan and Tan, Chengyang and Ni, Zhuobiao and Zhu, Yu and Yang, Xixian and Cai, Xin and Xu, Chuanyi and Fang, Yueping and Qiu, Rongliang and Liu, Yingju and Zhang, Shengsen, Endogenous Nitrogen-Doped Carbon Material Activation of Peroxydisulfate for Efficient Sulfamethoxazole Degradation. Available at SSRN: https://ssrn.com/abstract=4829204 or http://dx.doi.org/10.2139/ssrn.4829204

Zhan Cen

South China Agricultural University ( email )

Guangdong, Guangzhou
China

Chengyang Tan

South China Agricultural University ( email )

Guangdong, Guangzhou
China

Zhuobiao Ni

South China Agricultural University ( email )

Guangdong, Guangzhou
China

Yu Zhu

South China Agricultural University ( email )

Guangdong, Guangzhou
China

Xixian Yang

South China Agricultural University ( email )

Guangdong, Guangzhou
China

Xin Cai

South China Agricultural University ( email )

Guangdong, Guangzhou
China

Chuanyi Xu

South China Agricultural University ( email )

Guangdong, Guangzhou
China

Yueping Fang

South China Agricultural University ( email )

Guangdong, Guangzhou
China

Rongliang Qiu

South China Agricultural University ( email )

Guangdong, Guangzhou
China

Yingju Liu

South China Agricultural University ( email )

Guangdong, Guangzhou
China

Shengsen Zhang (Contact Author)

South China Agricultural University ( email )

Guangdong, Guangzhou
China

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