Area of research
Atmospheric Science · Health, Toxicology and Mutagenesis
Research interest
Research focused on Environmental chemistry and Particulates, with related work in Adsorption, Pregnancy, Photocatalysis. Notable publications include 'Utilizing the oxygen-atom trapping effect of Co 3 O 4 with oxygen vacancies to promote chlorite activation for water decontamination', 'MOF-based fibrous membranes adsorb PM efficiently and capture toxic gases selectively', and 'Effects of prenatal exposure to air particulate matter on the risk of preterm birth and roles of maternal and cord blood LINE-1 methylation: A birth cohort study in Guangzhou,...'.
Utilizing the oxygen-atom trapping effect of Co <sub>3</sub> O <sub>4</sub> with oxygen vacancies to promote chlorite activation for water decontamination
A Decision-Making System for Cotton Irrigation Based on Reinforcement Learning Strategy
Methylmercury Degradation by Trivalent Manganese
Semen damage contributed over 50 % to air-pollutant-induced infertility: A prospective cohort study of 3940 men in China
Secondary Formation and Impacts of Gaseous Nitro-Phenolic Compounds in the Continental Outflow Observed at a Background Site in South China
Rapid Assessment of Cerambycid Beetle Biodiversity in a Tropical Rainforest in Yunnan Province, China, Using a Multicomponent Pheromone Lure
In-situ synthesis of CuS@carbon nanocomposites and application in enhanced photo-fenton degradation of 2,4-DCP
Effects of Nonthermal Plasma on Microstructure and Oxidation Characteristics of Particulate Matter
MOF-based fibrous membranes adsorb PM efficiently and capture toxic gases selectively
Effects of prenatal exposure to air particulate matter on the risk of preterm birth and roles of maternal and cord blood LINE-1 methylation: A birth cohort study in Guangzhou, China
Characterization of soot inside a diesel particulate filter during a nonthermal plasma promoted regeneration step
Which Molecular Features Affect the Intrinsic Hepatic Clearance Rate of Ionizable Organic Chemicals in Fish?
Analyzing freely dissolved concentrations of cationic surfactant utilizing ion-exchange capability of polyacrylate coated solid-phase microextraction fibers