Area of research
Renewable Energy, Sustainability and the Environment · Water Science and Technology
Research interest
Research focused on Catalysis and Manganese, with related work in Starch, Adsorption, Crystallinity. Notable publications include 'Synthesis of starch-based super absorbent polymer with high agglomeration and wettability for applying in road dust suppression', 'Double-template-regulated bionic mineralization for the preparation of flower-like BiOBr/carbon foam/PVP composite with enhanced stability and visible-light-driven catalytic...', and 'A stepwise processing strategy for treating manganese residue and the remediation of hexavalent chromium in water and soil by manganese residue-derived (Fe,Mn)C2O4'.
Bi2WO6/spontaneously polarized ceramic‒g-C3N4 heterojunction with dynamic cascade electric fields to deplete unilaterally accumulated charges and break carrier shielding effect for boosting piezo-photocatalysis
Oxygen vacancy and dual-field synergy in amorphous MnO2/B-doped tubular g-C3N4 heterojunction for efficient and selective photocatalytic oxidation of 5-hydroxymethylfurfural
Construction of an interpenetrating manganese residue-derived FeC2O4/CuC2O4 composite with enhanced charge transfer in photo-Fenton reactions via mechanical activation pre-anchoring strategy
Construction of a Fe-Co alloy modified hollow tube CoFe2O4 with high interfacial compatibility and fast electron transport characteristics via photoreduction deposition pre-anchoring strategy for efficient Photo-Fenton catalysis
Ultra-dispersed W-doped carbon nitride anchoring on ceramic via the regulation of electrostatic field for efficient degradation of cationic surfactant
A stepwise processing strategy for treating manganese residue and the remediation of hexavalent chromium in water and soil by manganese residue-derived (Fe,Mn)C2O4
Construction of a C-decorated and Cu-doped (Fe,Cu)S/CuFe2O4 solid solution for photo-Fenton degradation of hydrophobic organic contaminant: Enhanced electron transfer and adsorption capacity
Construction of a Fe Cu/ceramic composite with surface electric field and far-infrared properties for effective photo-Fenton catalytic degradation of the wastewater generated from H2O2 production
Synthesis of starch-based super absorbent polymer with high agglomeration and wettability for applying in road dust suppression
Double-template-regulated bionic mineralization for the preparation of flower-like BiOBr/carbon foam/PVP composite with enhanced stability and visible-light-driven catalytic activity
Construction of a stable Cu-Fe@C composite catalyst with enhanced performance and recyclability for visible-light-driven photo-Fenton reaction
Formation of type 3 resistant starch from mechanical activation-damaged high-amylose maize starch by a high-solid method
Preparation of a stable polyurethane sponge supported Sn-doped ZnO composite via double-template-regulated bionic mineralization for visible-light-driven photocatalytic degradation of tetracycline
Enhancement of hydrothermal carbonization of chitin by combined pretreatment of mechanical activation and FeCl3
In Situ One-Pot Synthesis of C-Decorated and Cl-Doped Sea-Urchin-like Rutile Titanium Dioxide with Highly Efficient Visible-Light Photocatalytic Activity
Enhanced Thermal Stability and Flame Retardancy of Poly(Vinyl Chloride) Based Composites by Magnesium Borate Hydrate-Mechanically Activated Lignin
Valorization of manganese residue to prepare a highly stable and active Fe3O4@SiO2/starch-derived carbon composite for catalytic degradation of dye waste water
Cu anchored on manganese residue through mechanical activation to prepare a Fe-Cu@SiO2/starch-derived carbon composites with highly stable and active visible light photocatalytic performance
Effective treatment and utilization of hazardous waste sulfuric acid generated from alkylation by lignocellulose ester-catalyzed oxidative degradation of organic pollutants
Preparation of a Stable Nanoscale Manganese Residue-Derived FeS@Starch-Derived Carbon Composite for the Adsorption of Safranine T
Mineralization of organics in hazardous waste sulfuric acid by natural manganese oxide ore and a combined MnO2/activated carbon treatment to produce qualified manganese sulfate