[1] LIU Y X, WANG Y, LIU Z, et al.Oxidation removal of nitric oxide from flue gas using uv photolysis of aqueous hypochlorite [J].Environmental Science & Technology,2017,51(20):11950-11959 10.1021/acs.est.7b03628
[2] SONG X Y, MA X L, NING G Q, et al.Pitch-based nitrogen-doped mesoporous carbon for flue gas desulfurization[J].Industrial & Engineering Chemistry Research,2017,56(16):4743-4749 10.1021/acs.iecr.7b00054
[3] REN S, GUO F Q, YANG J, et al.Selection of carbon materials and modification methods in low-temperature sintering flue gas denitrification[J].Chemical Engineering Research and Design,2017,126:278-285 10.1016/j.cherd.2017.08.022
[4] LIU Y X, LIU Z Y, WANG Y, et al.Simultaneous absorption of SO2 and NO from flue gas using ultrasound/Fe2+/heat coactivated persulfate system[J].Journal of Hazardous Materials,2018,342:326-334 10.1016/j.jhazmat.2017.08.042
[5] MENG D M, ZHAN W C, GUO Y, et al.A highly effective catalyst of Sm-MnOx for the NH3-SCR of NOx at low temperature: The promotional role of Sm and its catalytic performance[J].ACS Catalysis,2015,5(10):5973-5983 10.1021/acscatal.5b007
[6] ZHAN S H, ZHANG H, ZHANG Y, et al.Efficient NH3-SCR removal of NOx with highly ordered mesoporous WO3(χ)-CeO2 at low temperatures[J].Applied Catalysis B: Environmental,2017,203:199-209 10.1016/j.apcatb.2016.10.010
[7] SHEN M Q, LI C X, WANG J Q, et al.New insight into the promotion effect of Cu doped V2O5/WO3–TiO2 for low temperature NH3-SCR performance[J].RSC Advances,2015,5(44):35155-35165 10.1039/C5RA04940G
[8] LIU Z M, LI Y, ZHU T L, et al.Selective catalytic reduction of NOx by NH3 over Mn-promoted V2O5/TiO2 catalyst[J].Industrial & Engineering Chemistry Research,2014,53(33):12964-12970 10.1021/ie501887f
[9] CHI G L, SHEN B X, YU R R, et al.Simultaneous removal of NO and Hg0 over Ce-Cu modified V2O5/TiO2 based commercial SCR catalysts[J].Journal of Hazardous Materials,2017,330:83-92 10.1016/j.jhazmat.2017.02.013
[10] DONG W L, YOO B R.Advanced metal oxide (supported) catalysts: Synthesis and applications[J].Journal of Industrial & Engineering Chemistry,2014,20(6):3947-3959 10.1016/j.jiec.2014.08.004
[11] 石晓燕, 丁世鹏, 贺泓,等. 改进钒基SCR脱硝催化剂的抗碱金属中毒性能 [J]. 环境工程学报,2014,8(5):2031-2034
[12] 杨超, 程华, 黄碧纯. 工业催化抗SO2和 H2O中毒的低温NH3-SCR脱硝催化剂研究进展 [J]. 化工进展,2014(4):907-913 10.3969/j.issn.1000-6613.2014.04.020
[13] JIANG L J, LIU Q C, ZHAO Q, et al.Promotional effect of Ce on the SCR of NO with NH3, at low temperature over MnOx supported by nitric acid-modified activated carbon[J].Research on Chemical Intermediates,2017,435:1-16 10.1016/j.catcom.2010.10.028
[14] LIU Y, NING P, LI K, et al.Simultaneous removal of NOx, and SO2, by low-temperature selective catalytic reduction over modified activated carbon catalysts[J].Russian Journal of Physical Chemistry A,2017,91(3):490-499 10.1134/S003602441703030
[15] YOSHIKAWA M, YASUTAKE A, MOCHIDA I.Low-temperature selective catalytic reduction of NOx by metal oxides supported on active carbon fibers[J].Applied Catalysis A:General,1998,173(2):239-245 10.1016/S0926-860X(98)00182-3
[16] 沈伯雄,郭宾彬,史展亮,等.CeO2/ACF的低温SCR烟气脱硝性能研究[J]. 燃料化学学报,2007,35(1):125-128
[17] SHAN W P, LIU F D, YU Y B, et al.The use of ceria for the selective catalytic reduction of NOx, with NH3[J].Chinese Journal of Catalysis,2014,35(8):1251-1259 10.1016/S1872-2067(14)60155-8
[18] YAO X J, GONG Y T, LI H L, et al.Research progress of ceria-based catalysts in the selective catalytic reduction of NOx by NH3[J].Acta Physico-Chimica Sinica,2015,31(5):817-828 10.3866/PKU.WHXB201503253
[19] JIN Q J, SHEN Y S, ZHU S M, et al.Rare earth ions (La, Nd, Sm, Gd, and Tm) regulate the catalytic performance of CeO2/Al2O3 for NH3-SCR of NO[J].Journal of Materials Research,2017,32:1-8 10.1557/jmr.2017.125
[20] 黄增斌, 李翠清, 王振,等. 不同分子筛负载锰铈催化剂的低温NH3-SCR脱硝性能[J]. 燃料化学学报,2016,44(11):1388-1393 10.3969/j.issn.0253-2409.2016.11.016
[21] ZHU H, HAN W F, LIU H Z.Influence of oxidation on heat-treated activated carbon support properties and metallic dispersion of Ru/C catalyst[J].Catalysis Letters,2007,115(1/2):13-18 10.1007/s10562-007-9068-y
[22] AUER E,FREUND A,PIETSCH J,et al.Carbons as supports for industrial precious metal catalysts[J].Applied Catalysis A: General,1998,173(2):259-271 10.1016/S0926-860X(98)00184-7
[23] 刘秋芳, 周艳波, 王丽,等. 活性炭预处理对Pd/AC催化剂上NO吸附性能的影响[J]. 复旦学报(自然科学版),2012,51(5):678-683
[24] 周静, 于才渊. 改性炭基催化剂低温烟气选择性还原脱硝性能研究[J]. 干燥技术与设备,2015(2):33-38
[25] 褚有群, 韩文锋, 童少平,等. 活性炭表面性质对氧气扩散电极电催化性能的影响[J]. 催化学报,2006,27(2):183-188
[26] 单晓梅,杜铭华,朱书全,等. 活性炭表面改性及吸附极性气体[J]. 煤炭转化,2003,26(1):32-36
[27] QI G S, YANG R T.Performance and kinetics study for low-temperature SCR of NO with NH3 over MnOx-CeO2 catalyst[J].Journal of Catalysis,2003,217(2):434-441 10.1016/S0021-9517(03)00081-2
[28] 吴彦霞, 房晶瑞, 雷本喜,等. 载体的制备条件对Mn-Ce/TiO2催化剂脱硝活性的影响[J]. 武汉理工大学学报,2013,35(7):37-41
[29] 张东辉,王卓晖,宋存义,等. 改性活性炭纤维负载锰铈复合氧化物低温选择性催化还原脱硝 [J]. 北京科技大学学报,2012,34(010):1102-1107
[30] DONG W K, HONG S C.Correlation between physicochemical properties of various commercial TiO2 supports and NH3-SCR activities of Ce/Ti catalysts [J].Journal of the Korean Industrial & Engineering Chemistry,2015,26(2):193-198 10.14478/ace.2015.1012
[31] 张信莉, 王栋, 彭建升,等. 煅烧温度对Mn改性γ-Fe2O3催化剂结构及低温SCR脱硝活性的影响 [J]. 燃料化学学报,2015,43(02):243-250