·Paper Publications
- [41] 26Ben Wang, Lushi Sun, Song Hu, Jun Xiang. NOx formation characteristic of pulverized coal in oxy-fuel condition. The 36th International Technical Conference on Clean Coal & Fuel Systems, Florida. June, 2011..
- [42] 25Ben Wang, Sheng Su, Lushi Sun, Jun Xiang, Song Hu. NO Formation Mechanism during Oxy-Fuel Combustion of Pyridine. Asia-Pacific Power and Energy Engineering Conference. March, 28-31, 2010, Chengdu, China. (EI & ISTP).
- [43] 24Ben Wang, Lushi Sun, Jun Xiang, Song Hu, Sheng Su. NO evolution characteristic of char in oxy-fuel condition. Asia-Pacific Power and Energy Engineering Conference. March, 27-29, 2012, Shanghai, China. (EI & ISTP) .
- [44] 23B. Wang, L.S. Sun, S. Su, J. Xiang, S. Hu, H. Fei. A kinetic study of the NO formation during oxy-fuel combustion of pyridine. Applied Energy. 2012, 92: 361–368..
- [45] 22Changsong Zhou; Lushi Sun; Anchao Zhang; Chuan Ma; Ben Wang; Jie Yu; Sheng Su; Song Hu; Jun Xiang. Elemental mercury (Hg0) removal from containing SO2/NO flue gas by magnetically separable Fe2.45Ti0.55O4/H2O2 advanced oxidation processes. Chemical Engineering Journal, 2015, 273: 381-389..
- [46] 21Changsong Zhou; Ben Wang; Chuan Ma; Zijian Song; Zhao Zeng; Jun Xiang; Song Hu; Sheng Su; Lushi Sun. Gaseous elemental mercury removal through heterogeneous Fenton-like processes using novel magnetically separable Cu0.3Fe2.7−xTixO4 catalysts Fuel, 2015, 161: 254-261..
- [47] 20Song, ZJ; Wang, B; Yu, J; Ma, C. Adsorption properties of CO, H2 and CH4 over Pd/-gamma-Al2O3 catalyst: A density functional study. Applied Surface Science. 2016, 387: 341-350. (SCI/EI; Impact factor: 3.387).
- [48] 19Changsong Zhou; Zijian Song; Zhiyue Zhang; Hongmin Yang; Ben Wang; Jie Yu; Lushi Sun. DFT studies of elemental mercury oxidation mechanism by gaseous advanced oxidation method: Co-interaction with H2O2 on Fe3O4 (111) surface. Applied Surface Science, 2017, 426: 647-655..
- [49] 18Changsong Zhou; Ben Wang; Zijian Song; Chuan Ma; Jie Yu; Zhiyue Zhang; Hongmin Yang; Lushi Sun. DFT studies of Hg0 oxidation by gaseous advanced oxidation method: H2O2/Fe3O4 (111) and hydroxyl pre-adsorbed Fe3O4 (111) surface. Fuel, 2017, 202: 318-327..
- [50] 17Zijian Song; Ben Wang; Jie Yu; Chuan Ma; Changsong Zhou; Tao Chen; Qianqian Yan; Ke Wang; Lushi Sun. Density functional study on the heterogeneous oxidation of NO over α-Fe2O3 catalyst by H2O2: Effect of oxygen vacancy. Applied Surface Science, 2017, 413: 292-301..