Area of research
Renewable Energy, Sustainability and the Environment · Environmental Engineering
Research interest
Research interests include Advanced Photocatalysis Techniques, Microbial Fuel Cells and Bioremediation, Climate variability and models, and Atmospheric chemistry and aerosols.
Electrochemical Impedance Spectroscopy Investigation of Accelerated Erosion Mechanisms in Cement-Based Materials Under an Applied Electric Field
Magnetic biochar- loaded nano zero-valent iron for heavy metal passivation: Coupled interaction mechanism between arsenic and cadmium
Efficiently hydrogenolysis of aromatic ether C-O bonds in lignite and model compounds over carbon-coated NiCo bimetallic catalyst
Magnetic biochar-supported nanoscale zero-valent iron for remediation of arsenic and cadmium-contaminated soils: The role of free radicals.
Amino acid ionic liquids for highly efficient separation of phenolic compounds from low-temperature coal tar: Experimental and mechanistic investigations
Endophytes Enhance Rice Inorganic Nitrogen Use Efficiency and Mitigate Nitrogen Loss Via Dissimilatory Nitrate Reduction To Ammonium in Paddy Soils.
Transport properties and accumulation patterns of trivalent chromium in rice: A hydroponic and modeling approach
The influences of iron plaque on nitrogen emissions from paddy soils under different water management practices
Novel coal-based carbon/K2CO3 prepared by improved alkali activation for highly sensitive detection of formaldehyde
Exceptional anti-toxic growth of water spinach in arsenic and cadmium co-contaminated soil remediated using biochar loaded with Bacillus aryabhattai.
Porous hollow nanospheres nickel phosphide and its high catalytic hydrogenation performance on naomaohu coal soluble portion and model compounds
Rice root Fe plaque increases paddy soil CH4 emissions via the promotion of electron transfer for syntrophic methanogenesis
Foliar N<sub>2</sub> O emissions constitute a significant source to atmosphere.
A Highly Selective Acetone Sensor Based on Coal-Based Carbon/MoO2 Nanohybrid Material
Response of tomatoes to inactivated endophyte LSE01 under combined stress of high-temperature and drought.
Functionally responsive hydrogels with salt-alkali sensitivity effectively target soil amelioration.
Suppression of ETI by PTI priming to balance plant growth and defense through an MPK3/MPK6-WRKYs-PP2Cs module
Self‐assembly Induced Enhanced Electrochemiluminescence of Copper Nanoclusters Using DNA Nanoribbon Templates
Micron-Scale Fabrication of Ultrathin Amorphous Copper Nanosheets Templated by DNA Scaffolds
Increasing soil Mn abundance promotes the dissolution and oxidation of Cr(III) and increases the accumulation of Cr in rice grains
Bioleaching and immobilizing of copper and zinc using endophytes coupled with biochar-hydroxyapatite: Bipolar remediation for heavy metals contaminated mining soils.
Gender Effects of Dioecious Plant Populus cathayana on Fungal Community and Mycorrhizal Distribution at Different Arid Zones in Qinghai, China
Association of urinary metal levels with metabolic syndrome in coal workers
Bioreduction performance of Cr(VI) by microbial extracellular polymeric substances (EPS) and the overlooked role of tryptophan.
Rice root Fe plaque enhances oxidation of microbially available organic carbon via Fe(III) reduction-coupled microbial respiration
A Perfect Pair: Stabilized Black Phosphorous Nanosheets Engineering with Antimicrobial Peptides for Robust Multidrug Resistant Bacteria Eradication
Genomic insights of the WRKY genes in kenaf (Hibiscus cannabinus L.) reveal that HcWRKY44 improves the plant’s tolerance to the salinity stress
Turning photocatalytic H2 evolution into CO2 reduction of molecular nickel(II) complexes by using a redox–active bipyridine ligand
Biochar enhances bioelectrochemical remediation of pentachlorophenol-contaminated soils via long-distance electron transfer
DNA Nanoribbon‐Templated Self‐Assembly of Ultrasmall Fluorescent Copper Nanoclusters with Enhanced Luminescence