- [11] A facile preparation of highly dispersed ultrasmall CeO2 clusters on g-C3N4 decorated TiO2 for efficient photooxidation of Hg0.Applied Surface Science,2022,589153048.
- [12] Remarkable performance of N-doped carbonization modified MIL-101 for low-concentration benzene adsorption.Separation and Purification Technology,2022,289120784.
- [13] Improvement of water resistance by Fe2O3/TiO2 photoelectrocatalysts for formaldehyde removal: Experimental and theoretical investigation.Environmental Science Pollution Research,2022,2913805-13821.
- [14] Chemical fingerprint and source apportionment of PM2.5 in highly polluted events of southern Taiwan.Environmental Science and Pollution Research,2019,276918-6935.
- [15] Chemical composition and health risk of PM2.5 from near-ground firecracker burning in micro region of eastern Taiwan.Aerosol and Air Quality Research,2019,19(10):
- [16] Mechanism of enhancement of photooxidation of Hg0 by CeO2-TiO2: Effect of band structure on the formation of free radicals.Chemical Engineering Journal,2019,38212827.
- [17] Adsorption phenomenon and kinetic mechanisms of Hg0 and HgCl2 by innovative composite sulfurized activated carbons.Fuel,2019,256115894.
- [18] Chemisorption and kinetic mechanisms of elemental mercury on immobilized V2O5/TiO2 at low temperatures.Journal of Hazardous Materials,2019,368819-829.
- [19] How incense and joss paper burning during the worship activities influences ambient mercury concentrations in indoor and outdoor environments of an Asian temple?.Chemosphere,2017,167530-540.
- [20] The enhancement of photo-oxidation efficiency of elemental mercury by immobilized WO3/TiO2 at high temperatures.Applied Catalysis B: Environmental,2016,195(15):90-103.