1.青年科学基金项目,21606195,低温NH3-SCR铈基纳米催化剂结构调控及催化机制研究,2017/01-2019/12,20万元,参与
2.青年科学基金项目,21306166,Fe(II)EDTA强化生物脱硝过程中络合态NO还原机理研究,2014/01-2016/12,25万,参与
3.浙江省自然科学基金委员会青年基金项目,LQ14B060006,橄榄石催化剂的制备、改性及其HC-SCR脱硝机理研究,2014/01-2016/12,5万
(1) Wang X.,Shi Y., Li S., Li W., Promotional synergistic effect of Cu and Nb doping on a novel Cu/Ti-Nb temary oxide catalyst for the selective catalytic reduction of NOxwith NH3,Applied Catalysis B-Environmental, 2018, 220:234-250
(2)Shi Y., Wang X., Xia, Y., Sun C., Zhao C., Li S., Li W., Promotional effect of CeO2on the propene poisoning resistance of HBEA zeolite catalyst for NH3-SCR of NOx, Molecular Catalysis, 2017, 433:265-273
(3) Li S., Wang X., Tan S.,Shi Y., Li W., CrO3supported on sargassum-based activated carbon as low temperature catalysts for the selective catalystic reduction of NO with NH3, Fuel, 2017, 191:511-517
(4)Shi Y., Tan S., Wang, X., Li M., Li S., Li W., Regeneration of sulfur-poisoned CeO2catalyst for NH3-SCR of NOx, Catalysis Communications, 2016, 86:67-71
(5) Lv B., Xia Y.,Shi Y., Liu N., Li W., Li S., A novel hydrophilic amino acid ionic liquid C(2)OHmin Gly as aqueous aorbent for CO2capture, International Journal of Greenhouse Gas Control, 2016, 46:1-6
(6)Shi Y., Tan S., Li S., Zhao J., Xia Y., Lv B., Li W., Inhibitory effect of SO2on side reactions of NH3-SCR over olivine, Catalysis Science & Technology, 2015, 5:3613-3623
(7) Li W., Tan S.,Shi Y., Li S., Utilization of sargassum based activated carbon as a potential waste derived catalyst for low temperature selective catalytic reduction of nitri oxide, Fuel, 2015, 160:35-42
(8)Lv B.,Shi Y., Sun C., Liu N., Li W., Li S., CO2capture by a highly-efficient aqueous blend of monoethanolamine and a hydrophilic amino acid ionic liquid C(2)OHmin Gly, Chemical Engineering Journal, 2015, 270:372-377
(9)Shi Y., Xia Y., Lv B., Liu N., Zhang L., Li S., Li W., Emission inventory and trends of NOxfor China, 2000-2020, Journal of Zhejiang University-Sciennce A, 2014, 15:454-464
(10) Xia Y.,Shi Y., Zhou Y., Liu N., Li W., Li S., A new approach for NOxremoval from flue gas using a biofilm electrode reactor coupled with chemical absorption, Energy & Fuels, 2014, 28:3332-3338