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研究领域

大气污染控制与资源化,包括CO2富集分离及处置技术(CCS); 烟气脱硝(氮)技术;脉冲等离子体复合技术处理有机废气; 工业废气综合利用和治理新技术开发,固废综合利用与新技术开发; PM2.5源解析与减排 工业生态过程,环境安全系统

近期论文

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[1] Yamin Liu, Qing Ye, Mei Shen, Jingjin Shi, Jie Chen, Hua Pan, and Yao Shi*, Carbon Dioxide Capture by Functionalized Solid Amine Sorbents with Simulated Flue Gas Conditions, Environmental Science & Technology, 2011, 45, 5710–5716. (SCI, IF=4.825) [2] Jiang J Q, Pan H, Sun G J, Ye Q, Shao Z H, Shi Y*. Promotion of Ni/H-BEA by Fe for NOx reduction with propane in a lean-burn condition. Energy Fuels, 2011, 25: 4377–4383. (SCI, IF=2.444) [3] Guo-qing Di*, Zheng-guang Li, Bang-jun Zhang, Yao Shi. Adjustment on subjective annoyance of low frequency noise by adding additional sound. Journal of Sound and Vibration. 2011, 330(23):5707-5715. (SCI, IF=1.332) [4] Jianwen Wei, Lei Liao, Yu Xiao, Pei Zhang, Yao Shi*, Capture of carbon dioxide by amine-impregnated as-synthesized MCM-41, Journal of Environmental Sciences, 2010, 22(10): 1558–1563. (SCI, IF=1.513) [5] Yamin Liu, Jingjin Shi, Jie Chen, Qing Ye, Hua Pan, Zhenhua Shao, Yao Shi *, Dynamic performance of CO2 adsorption with tetraethylenepentamine-loaded KIT-6, Microporous and Mesoporous Materials. 2010, 134: 16-21. (SCI, IF= 3.220) [6] ] Chen J, Yang J T, Pan H, Su Q F, Liu Y M, Shi Y*. Abatement of malodorants from pesticide factory in dielectric barrier discharges. J Hazard Mater, 2010, 177(1-3): 908-913. (SCI, IF=3.723) [7] Jie Chen, Qingfa Su, Hua Pan, Jianwen Wei, Xuming Zhang, Shi Y*. Influence of balance gas mixture on decomposition of dimethyl sulfide in a wire-cylinder pulse corona reactor. Chemosphere. 2009. 75(2): 261–265. [8] Wei JW, Shi JJ, Pan H, Su QF, Zhu JB, Shi Y*, Thermal and hydrothermal stability of amino-functionalized SBA-16 and promotion of hydrophobicity by silylation, Microporous And Mesoporous Materials, 117 (2009) 596. [9] Zhang SH, Cai LL, Liu Y, Shi Y, Li W, Effects of NO2 (-) and NO3 (-) on the Fe(III)EDTA reduction in a chemical absorption-biological reduction integrated NO (x) removal system, Applied Microbiology And Biotechnology, 82 (2009) 557 [10]Wei, J., Shi, J., Pan, H., Zhao, W., Ye, Q., Shi, Y*., Adsorption of carbon dioxide on the organically functionalized SBA-16, Microporous And Mesoporous Materials,116(2008): 394–399 [11]Shi Y, Pan H, Li ZJ, Zhang YT, Low-temperature decomposition of NOx over Fe-Mn/H-beta catalysts in the presence of oxygen, Catalysis Communications, 9 (2008) 1356 [12]Shi Y, Pan H, Zhang YT, Li W, Promotion of MgO addition on SO2 tolerance of Ag/Al2O3 for selective catalytic reduction of NOx with methane at low temperature, Catalysis Communications, 9 (2008) 796 [13]Jing BL, Li W, Shi Y*, Fang HL, Wang Y, Selective catalytic reduction of NO by propane over bifunctional catalyst of transition metal Al2O3/H-USY in excess oxygen, Environmental Engineering Science, 25 (2008) 319 [14]Zhang, P., Shi, Y*., Wei, J., Kinetics region and model for mass transfer in carbon dioxide absorption into aqueous solution of 2-amino-2-methyl-1-propanol, Sep. Purif. Technol., 2007, 56: 340-347 [15]Guo, H., Zhang, Q., Shi, Y*., Wang, D., On-road remote sensing measurements and fuel-based motor vehicle emission inventory in Hangzhou, China, Atmospheric Environment, 2007(41): 3095–3107 [16]Zhang, ShiHan, Li, Wei, Wu, Cheng-Zhi, Chen, Han, Shi, Yao, Reduction of Fe(II)EDTA-NO by a newly isolated Pseudomonas sp strain DN-2 in NOx scrubber solution, Applied Microbiology And Biotechnology , 2007, 76 (5): 1181-1187 [17]W. Li, C.Z. Wu, S. H. Zhang, K. Shao, Y. Shi, Evaluation of Microbial Reduction of [18]Fe(III)EDTA in a Chemical Absorption-Biological Reduction Integrated NOx Removal System, Environ. Sci. Technol. 41(2007) [19]Lizhong Zhu, Senlin Tian, Hanxi Zhu, Yao Shi, Silylated pillared clay (SPILC): A novel bentonite-based inorgano-organo composite sorbent synthesized by integration of pillaring and silylation, Journal of Colloid and Interface Science, 2007, 315 (1): 191-199 [20]Yao Shi, Jian-jun Ruan, Xin Wang, Wei Li, Tian-en Tan. Evaluation of Multiple Corona Reactor Modes and the Application in Odor Removal. Plasma Chem. Plasma Proc. (2006) 26:187–196

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