1. Fei Gong, Tongxiao Zhou, Jingchao Wei, Han Zhang, Ziheng Jin, Jiaqi Xu, Bangda Wang*, Xia Jiang. Strategies in Pore-Structure engineering of hierarchical zeolites for Bio-Jet fuel production via catalytic fast pyrolysis. Bioresource Technology 452 (2026) 134614 2. Tongxiao Zhou, Shenggui Ma, Bangda Wang*, Xia Jiang. A promising core–shell carbon-zeolite composite catalyst prepared from distiller’s grain pyrolysis residue for enhanced low-temperature NH3-SCR of NOx. Fuel 411 (2026) 138030 3. Tongxiao Zhou, Lu Liu, Bangda Wang*, Shenggui Ma, Zhongde Dai, Wenju Jiang, Xia Jiang. Insights into the enhanced activity and SO2 resistance of air oxidation treated Mn-Fe doped biochar catalyst in the low-temperature catalytic reduction of NOx with NH3. Fuel 357 (2024) 129989 4. Tongxiao Zhou1, Han Zhang1, Fei Gong, Jingchao Wei, Hongying Liu, Bangda Wang, Xia Jiang. Migration and evolution of N-containing species during pyrolysis of distillers’ grains. Journal of Analytical and Applied Pyrolysis 194 (2026) 107489 5. Fei Gong, Tongxiao Zhou, Jingchao Wei, Han Zhang, Yulong Chang, Ziheng Jin, Bangda Wang*, Xia Jiang. Enhanced CO2 capture with rational design of carbon-silicon composites via multi-step hydrothermal strategy. Separation and Purification Technology 379 (2025) 134995 6. Jingchao Wei, Bangda Wang*, Tongxiao Zhou, Fei Gong, Han Zhang, Quanwei Lv, Ziheng Jin, Shouliang Yi, Xia Jiang. Dual catalytic system using industrial solid waste and zeolite for enhanced aromatic hydrocarbon conversion from waste bamboo biomass. Waste Management 212 (2026) 115342 7. Jingchao Wei, Tongxiao Zhou, Hui Xu, Yi Wang, Bangda Wang*. Comparative study of silica-based porous materials in the purification of radioactive wastewater. Separation and Purification Technology 357 (2025) 130234 8. Zijun Kong, Han Zhang, Tongxiao Zhou, Lingling Xie, Bangda Wang*, Xia Jiang. Biomass-derived functional materials: Preparation, functionalization, and applications in adsorption and catalytic separation of carbon dioxide and other atmospheric pollutants. Separation and Purification Technology 354 (2025) 129099 9. Bangda Wang, Fengli Gan, Zhongde Dai, Shenggui Ma, Wenhua Chen, Xia Jiang*, Air oxidation coupling NH3 treatment of biomass derived hierarchical porous biochar for enhanced toluene removal.Journal of Hazardous Materials, 2021, 123995 10. Zheng Gong, Bangda Wang*, Wenhua Chen, Shenggui Ma, Wenju Jiang, Xia Jiang*,Waste straw derived Mn-doped carbon/mesoporous silica catalyst for enhanced low-temperature SCR of NO. Waste Management,136 (2021) 28–35 11. Fengli Gan, Bowen Cheng, Ziheng Jin, Zhongde Dai, Bangda Wang*, Lin Yang, Xia Jiang, Hierarchical porous biochar from plant-based biomass through selectively removing lignin carbon from biochar for enhanced removal of toluene, Chemosphere, 2021, 130514 12. Tongxiao Zhou, Bangda Wang*, Zhongde Dai, Xia Jiang, Yi Wang. Organotemplate-free synthesis of MOR zeolite from coal fly ash through simultaneously effective extraction of Si and Al.Microporous and Mesoporous Materials, 2021,314:110872 13. Hao Zha, Tongxiao Zhou, Fengli Gan, Bangda Wang*, Zhongde Dai, Xia Jiang. Quantitative Study of the Enhanced Content and Chemical Stability of Functional Groups in Mesoporous Silica by In-Situ Co-Condensation Synthesis, Catalysts. 2022, 12, 620. 14. Bangda Wang, Yuexi Zhou, Yi Wang*, et al. Novel synthesis of cyano-functionalized mesoporous silica nanospheres (MSN) from coal fly ash for removal of toxic metals from wastewater.Journal of Hazardous Materials, 2018,345:76-86. 15. Bangda Wang, Yuexi Zhou, Yi Wang*, et al. Preparation of amidoxime-functionalized mesoporous silica nanospheres (ami-MSN) from coal fly ash for the removal of U(VI),Science of the Total Environment, 2018,626:219-227. 16. Bangda Wang,Yuexi Zhou, Yi Wang*, et al. In Situ Synthesis of TiO2 Doped Mesoporous Silica from Coal Fly Ash for the Photocatalytic Degradation of Dyes,Ind. Eng. Chem. Res., 2018, 57:15632-15637. 17. Bangda Wang,Yi Wang, Tatsuya Okubo*, Toru Wakihara*, et al. Insights into the ion-exchange properties of Zn(II)-incorporated MOR zeolites for the capture of multivalent cations.Physical Chemistry Chemical Physics, 2019, 21:4015-4021 |