A comprehensive review of the electrochemical advanced oxidation processes: Detection of free radical, Electrode materials and Application DOI
Longyu Zhang, Weijun Peng, Wei Wang

et al.

Journal of environmental chemical engineering, Journal Year: 2024, Volume and Issue: 12(5), P. 113778 - 113778

Published: Aug. 6, 2024

Language: Английский

Atomic Hydrogen in Electrocatalytic Systems: Generation, Identification, and Environmental Applications DOI
Wentian Zheng, Yanbiao Liu, Fuqiang Liu

et al.

Water Research, Journal Year: 2022, Volume and Issue: 223, P. 118994 - 118994

Published: Aug. 18, 2022

Language: Английский

Citations

134

Mechanism of the application of single-atom catalyst-activated PMS/PDS to the degradation of organic pollutants in water environment: A review DOI
Donghao Li, Shixuan Zhang,

Shengnan Li

et al.

Journal of Cleaner Production, Journal Year: 2023, Volume and Issue: 397, P. 136468 - 136468

Published: Feb. 23, 2023

Language: Английский

Citations

117

High-efficiency degradation of carbamazepine by the synergistic electro-activation and bimetals (FeCo@NC) catalytic-activation of peroxymonosulfate DOI

Shuaishuai Li,

Minghua Zhou, Huizhong Wu

et al.

Applied Catalysis B Environment and Energy, Journal Year: 2023, Volume and Issue: 338, P. 123064 - 123064

Published: July 3, 2023

Language: Английский

Citations

82

Electro-Induced Carbon Nanotube Discrete Electrodes for Sustainable Persulfate Activation DOI
Wei Ren, Qiming Zhang, Cheng Cheng

et al.

Environmental Science & Technology, Journal Year: 2022, Volume and Issue: 56(19), P. 14019 - 14029

Published: Sept. 5, 2022

In electrochemical advanced oxidation processes (EAOPs), the rate-limiting step is mass transfer of pollutants to electrodes due limited active surface areas. To this end, we established a three-dimensional (3D) EAOP system by coupling conventional graphite with dispersed carbon nanotubes (CNTs). The (particularly anode) induced electric field spontaneously polarized CNTs into reactive particle (CNT-PEs) in solution, which remarkably promoted activation peroxydisulfate (PDS) generate CNT-PDS* complexes and surface-bound radicals (SBRs). Based on excited potential (ECNT-PEs) at different positions 3D field, CNT-PEs were activated three states. (i) ECNT-PEs < Eorganic, are chemically inert toward DCP oxidation; (ii) Eorganic Ewater, will oxidize via an electron-transfer process (ETP); (iii) > both anode water produce SBRs. Thus, could be oxidized ETP form polychlorophenols CNT surface, causing rapid deactivation micro-electrodes. contrast, SBRs attack directly chloride ions hydroxylated products, maintaining cleanliness activity for long-term operations.

Language: Английский

Citations

78

Insights into reactive species generation and organics selective degradation in Fe-based heterogeneous Fenton-like systems: A critical review DOI
Ling Li, Zhuo Yin, Min Cheng

et al.

Chemical Engineering Journal, Journal Year: 2022, Volume and Issue: 454, P. 140126 - 140126

Published: Nov. 9, 2022

Language: Английский

Citations

75

Persulfate activated by non-thermal plasma for organic pollutants degradation: A review DOI
He Guo,

Shijia Pan,

Zhixuan Hu

et al.

Chemical Engineering Journal, Journal Year: 2023, Volume and Issue: 470, P. 144094 - 144094

Published: June 16, 2023

Language: Английский

Citations

61

Challenges Relating to the Quantification of Ferryl(IV) Ion and Hydroxyl Radical Generation Rates Using Methyl Phenyl Sulfoxide (PMSO), Phthalhydrazide, and Benzoic Acid as Probe Compounds in the Homogeneous Fenton Reaction DOI
Yufan Chen, Christopher J. Miller,

Jieli Xie

et al.

Environmental Science & Technology, Journal Year: 2023, Volume and Issue: 57(47), P. 18617 - 18625

Published: Feb. 1, 2023

Ferryl ion ([FeIVO]2+) has often been suggested to play a role in iron-based advanced oxidation processes (AOPs) with its presence commonly determined using the unique pathway from methyl phenyl sulfoxide (PMSO) sulfone (PMSO2). However, we show here that products of PMSO, formed on reaction hydroxyl radical, enhance PMSO2 formation as result their complexation Fe(III) leading changes reactivity species homogeneous Fenton reaction. As such, PMSO should be used caution investigate [FeIVO]2+ AOPs these insights suggesting need reassess findings many previous studies which this reagent was used. The other common target compounds, phthalhydrazide and hydroxybenzoic acids, were also found modify rate extent iron cycling and/or redox reactions, either by probe compound itself formed. Overall, study highlights confounding effects aromatic compounds recognized if reliable mechanistic into are obtained.

Language: Английский

Citations

53

Photocatalysis-self-Fenton system over edge covalently modified g-C3N4 with high mineralization of persistent organic pollutants DOI

Tongbin Lu,

Hui Zhao,

Liang Jian

et al.

Environmental Research, Journal Year: 2023, Volume and Issue: 222, P. 115361 - 115361

Published: Jan. 28, 2023

Language: Английский

Citations

51

Highly Efficient FeIII‐initiated Self‐cycled Fenton System in Piezo‐catalytic Process for Organic Pollutants Degradation DOI
Jing Xu, Qiang Zhang, Xin Gao

et al.

Angewandte Chemie International Edition, Journal Year: 2023, Volume and Issue: 62(32)

Published: June 15, 2023

Piezo-catalytic self-Fenton (PSF) system has been emerging as a promising technique for wastewater treatment, while the competing O2 reductive hydrogen peroxide (H2 ) production and FeIII reduction seriously limited reaction kinetics. Here, we develop two-electron water oxidative H2 (WOR-H2 coupled with over /BiOIO3 piezo-catalyst highly efficient PSF. It is found that presence of can simultaneously initiate WOR-H2 to FeII , thereby enabling rapid kinetics towards subsequent Fenton /FeII . The initiating PSF offers exceptional self-recyclable degradation pollutants rate constant sulfamethoxazole (SMZ) 3.5 times classic -PSF system. This study new perspective constructing systems shatters preconceived notion in reaction.

Language: Английский

Citations

46

Interstitial Boron Atoms in Pd Aerogel Selectively Switch the Pathway for Glycolic Acid Synthesis from Waste Plastics DOI Open Access
Junliang Chen, Miaomiao Jiang, Fangzhou Zhang

et al.

Advanced Materials, Journal Year: 2024, Volume and Issue: unknown

Published: July 28, 2024

Abstract Electro‐reforming of poly(ethylene terephthalate) (PET) into valuable chemicals is garnering significant attention as it opens a mild avenue for waste resource utilization. However, achieving high activity and selectivity C2 products during ethylene glycol (EG) oxidation in PET hydrolysate on Pd electrocatalysts remains challenging. The strong interaction between carbonyl (*CO) intermediates leads to undesirable over‐oxidation poisoning sites, which hinders the highly efficient production. Herein, nonmetallic alloying strategy employed fabricate Pd‐boron alloy aerogel (PdB), wherein B atoms are induced regulate electron structure surface oxophilicity. This approach allows remarkable mass 6.71 A mg −1 , glycolic acid (GA) Faradaic efficiency (FE) 93.8%, stable 100 h cyclic electrolysis. In situ experiments density functional theory calculations reveal contributions inserted lattice effective EG‐to‐GA conversion. Interestingly, heightened oxophilicity regulated electronic by incorporation weakened *CO adsorption enhanced hydroxyl species affinity accelerate oxidative *OH adspecies formation, thereby synergistically avoiding boosting GA synthesis. work provides insights rational design high‐performance synthesis via an oxophilic motifs strategy.

Language: Английский

Citations

25