2023年度发表论文

分享到:
点击次数:443 更新时间:2023年02月04日19:52:03 打印此页 关闭

1. Yuan, P.; Guo, T.; Pan, X.; Hu, X.; Ma, J.; Xu, D.; Zhou, Z.; Guo, Q*.; Guo, X., Process optimization and thermodynamic analysis of autothermal coal chemical looping gasification industrial demonstration system. Fuel 2023, 334, 126667.

2. Wan, Z.; Hu, X.; Li, C.; Zhang, J.; Wang, Q.; Fang, L.; Zhang, L.; Guo, Q*.; Sun, D., Simultaneous Oxidation and Absorption of Nitric Oxide and Sulfur Dioxide by Peroxymonosulfate Activated by Bimetallic Metal-Organic Frameworks. Journal of Environmental Chemical Engineering 2023, 109417.

3. Xiang, X.; Guo, T.; Yin, Y.; Gao, Z.; Wang, Y.; Wang, R.; An, M.; Guo, Q*.; Hu, X., High Adsorption Capacity Fe@13X Zeolite for Direct Air CO2 Capture. Ind. Eng. Chem. Res. 2023.

4. Nie, M.; Guo, T.; Qiang, F.; Wu, M.; Liu, Y.; Guo, Q*.; He, Y., Effect of Mn content in CuO/MnCeOx catalysts on CO2 hydrogenation for methanol synthesis. Reaction Chemistry & Engineering 2023.

5. Zuo, C.; Tai, X.; Su, Q.; Jiang, Z.; Guo, Q*., S-scheme OV–TiO2@Cu7S4 heterojunction on copper mesh for boosting visible-light nitrogen fixation. Optical Materials 2023, 137, 113560.

6. Wang, R.; Guo, T.; Xiang, X.; Yin, Y.; Guo, Q*.; Wang, Y., Antioxidative degradation mechanism of MB modified TEPA-MCM-41 adsorbents for carbon capture from flue gas. The Canadian Journal of Chemical Engineering 2023, https://doi.org/10.1002/cjce.24894.

7. An, M.; Guo, Q.; Wei, X., Reaction mechanism of H2S with Hg0 on CuFe2O4 oxygen carrier with oxygen vacancy structure during coal chemical looping gasification. Fuel 2023, 333, 126477.

8. Yang, J.; Na, Y.; Hu, Y.; Zhu, P.; Meng, F.; Guo, Q.; Yang, Z.; Qu, W.; Li, H., Granulation of Mn-based perovskite adsorbent for cyclic Hg0 capture from coal combustion flue gas. Chemical Engineering Journal 2023, 141679.

9. Zhao, Y.; Jin, B.; Zhang, Z.; Huang, K.; Wang, Y.; Luo, X.; Guo, Q.; Liang, Z., Tuning metal oxide-support interaction and crystal structure of prussian blue derived iron-based oxygen carriers for enhanced chemical looping CO2 conversion. Separation and Purification Technology 2023, 123089.

10. Wang, C.; Wang, L.; Tao, X.; Huang, L.; Yang, Z.; Guo, Q., Novel dielectric barrier discharge (DBD) plasma method for preparation of Fe-MOFs@Fe2O3 composites to treat waste polyethylene terephthalate (PET). Journal of Environmental Chemical Engineering 2023, 11 (2), 109581.

11. Fan, Y.; Jin, B.; Guo, Q.; Liang, Z., Crystallite Phase Effect on the Redox Reactivity of Layered Double Hydroxide-Derived Iron-Based Oxygen Carriers for Chemical Looping CO2 Reduction. ACS Sustainable Chemistry & Engineering. 2023.

12. Yuqing, H. Liu, X.; Hu, X.; Guo, Q., Treatment of phenolic wastewater by anaerobic fluidized bed microbial fuel cell filled with polyaniline–macroporous adsorption resin as multifunctional carrier. The Canadian Journal of Chemical Engineering 2023, https://doi.org/10.1002/cjce.24847.

13. Meng, L.; Zhu, Y.; Zhu, M.; Wu, G.; Guo, W.; Geng, C.; Li, N.; Feng, R.; Zhang, H.; Guo, Q.; Bai, H., Exploring depolymerization mechanism and complex reaction networks of aromatic structures in chemical looping combustion via ReaxFF MD simulations. Journal of the Energy Institute 2023, 101180.

14. Li, Z.; Zhu, Y.; Li, N.; Zhang, H.; Wu, Y.; Li, P.; Guo, Q.; Bai, H., Revealing reactive mechanism and nitrogen transformation of HSW coal combustions at molecule and particle scales. Powder Technology. 2023, 118368.

15. Huang, H.; Wei, Z.; Ge, Q.; Guo, Q., Analysis of spatial-temporal evolution and influencing factors of carbon emission efficiency in Chinese cities. Frontiers in Environmental Science 2023, 11.

16. Guo, W.; Wu, J.; Meng, L.; Geng, C.; Yang, Y.; Li, N.; Wu, G.; Zhang, H.; Guo, Q.; Bai, H., Reactive Behaviors and Mechanisms of Cellulose in Chemical Looping Combustions with Iron-based Oxygen Carriers: An Experimental Combined with ReaxFF MD Study. Applications in Energy and Combustion Science 2023, 100135.










上一条:郭庆杰教授团队参加第二届中国化学链会议并获奖 下一条:郭庆杰团队国家自然科学基金地区基金项目结题成果科普性介绍