Bo Lai

About Bo Lai

Bo Lai, With an exceptional h-index of 68 and a recent h-index of 66 (since 2020), a distinguished researcher at Sichuan University, specializes in the field of Wastewater treatment, Zero valent iron, Micro-electrolysis, AOPs.

His recent articles reflect a diverse array of research interests and contributions to the field:

Intensive Treatment of Organic Wastewater by Three-Dimensional Electrode System within Mn-Loaded Steel Slag as Catalytic Particle Electrodes

Ferrate (VI) assists in reducing cytotoxicity and genotoxicity to mammalian cells and organic bromine formation in ozonated wastewater

Understanding the multiple functions of the electrolyte tetrapolyphosphate in Electro-Fenton system for effective removal of diclofenac

Enhanced ferrate decontamination efficiency by acetylene black: The role of ketonic groups as electron-donating sites

Enhanced contaminant degradation by FeS under oxic conditions with the coexistence of cobalt and nickel

Iodate (V) activated ferrate (VI) for enhanced oxidation of micropollutants from water and sediment media

Accelerated removal of naproxen in the iron-based peracetic acid activation system by chloride ions: Enhancement of reactive oxidative species via the formation of iron …

Enhanced Fenton-like oxidation (Vis/Fe (III)/Peroxydisulfate): The role of iron species and the Fe (III)-LVF complex in levofloxacin degradation

Bo Lai Information

University

Position

college of Architecture and Environment

Citations(all)

14924

Citations(since 2020)

13993

Cited By

3845

hIndex(all)

68

hIndex(since 2020)

66

i10Index(all)

189

i10Index(since 2020)

184

Email

University Profile Page

Google Scholar

Bo Lai Skills & Research Interests

Wastewater treatment

Zero valent iron

Micro-electrolysis

AOPs

Top articles of Bo Lai

Intensive Treatment of Organic Wastewater by Three-Dimensional Electrode System within Mn-Loaded Steel Slag as Catalytic Particle Electrodes

Molecules

2024/2/21

Ferrate (VI) assists in reducing cytotoxicity and genotoxicity to mammalian cells and organic bromine formation in ozonated wastewater

Water Research

2024/2/21

Understanding the multiple functions of the electrolyte tetrapolyphosphate in Electro-Fenton system for effective removal of diclofenac

Separation and Purification Technology

2024/2/1

Enhanced ferrate decontamination efficiency by acetylene black: The role of ketonic groups as electron-donating sites

Separation and Purification Technology

2024/2/1

Enhanced contaminant degradation by FeS under oxic conditions with the coexistence of cobalt and nickel

Applied Catalysis B: Environmental

2024/2/1

Iodate (V) activated ferrate (VI) for enhanced oxidation of micropollutants from water and sediment media

Chemical Engineering Journal

2024/1/15

Accelerated removal of naproxen in the iron-based peracetic acid activation system by chloride ions: Enhancement of reactive oxidative species via the formation of iron …

Journal of Hazardous Materials

2024/1/15

Enhanced Fenton-like oxidation (Vis/Fe (III)/Peroxydisulfate): The role of iron species and the Fe (III)-LVF complex in levofloxacin degradation

Journal of Hazardous Materials

2024/1/15

Mechanical agitation and ultrasound constructed in situ Fenton system: The role of atomic hydrogen for Fe (III) reduction

Separation and Purification Technology

2024/7/15

Thermo-activated periodate oxidation process for tetracycline degradation: Kinetics and byproducts transformation pathways

Journal of Hazardous Materials

2024/1/5

Enhanced TC degradation by persulfate activation with carbon-coated CuFe2O4: The radical and non-radical co-dominant mechanism, DFT calculations and toxicity evaluation

Journal of Hazardous Materials

2024/1/5

Immobilizing cobalt-iron bimetal on Al2O3 by electroless plating-calcination for peroxymonosulfate activation: Performance, mechanistic and practicality

Chemical Engineering Journal

2024/5/15

Unraveling the discriminative mechanisms for peroxy activation via atomically dispersed Fe-N5 sites for tunable water decontamination

Applied Catalysis B: Environmental

2024/1/1

Fe-N co-doped biochar derived from biomass waste triggers peracetic acid activation for efficient water decontamination

Journal of Hazardous Materials

2024/5/15

Review of advanced oxidation processes for treating hospital sewage to achieve decontamination and disinfection

2024/1/1

Mechanically treated Mn2O3 triggers peracetic acid activation for superior non-radical oxidation of micropollutants: Identification of reactive complexes

Water Research

2024/5/15

N, S co-doped porous carbon to accelerate Fe3+/Fe2+ redox cycle for peroxymonosulfate activation

Separation and Purification Technology

2024/1/1

Surface structure regulation of sulfidated zero-valent iron by H2O2 for efficient pH self-regulation and proton cycle to boost heterogeneous Fenton-like reaction for pollutant …

Applied Catalysis B: Environment and Energy

2024/5/15

Activation of peroxymonosulfate by FeVO3-x for the degradation of carbamazepine: Vanadium mediated electron shuttle and oxygen vacancy modulated interface chemistry

Chinese Chemical Letters

2024/1/1

Ferrate (VI)/percarbonate for the oxidation of micropollutants: Interactive activation and release of low-concentration hydrogen peroxide for efficient electron utilization

Journal of Hazardous Materials

2024/5/5

See List of Professors in Bo Lai University(Sichuan University)