[1] 段传和, 夏怀祥, 葛亮. 燃煤电站SCR烟气脱硝工程技术[M]. 北京:中国电力出版社, 2009. [2] 高凤, 杨嘉谟. 燃煤烟气脱硝技术的应用与进展[J]. 环境保护科学, 2007, 33(3):11-13. GAO Feng, YANG Jiamo. Application and development of technologies for flue gas denitration[J]. Environmental Protection Science, 2007, 33(3):11-13. [3] 张强. 燃煤电站SCR烟气脱硝工程技术及工程应用[M]. 北京:化学工业出版社, 2007. [4] 张荀, 柏源, 刘涛, 等. 火电厂氮氧化物控制对策研究[J]. 电力科技与环保, 2014, 30(1):30-32. ZHANG Xun, BO Yuan, LIU Tao, et al. Thinking on control strategy and problems of industrialization for nitrogen oxides control in thermal power industry[J]. Electric Power Technology and Environmental Protection, 2014, 30(1):30-32. [5] 火电厂烟气脱硝催化剂检测技术规范:DL/T 1286-2013[S]. 2013. [6] 平板式烟气脱硝催化剂:GB/T 31584-2015[S]. 2015. [7] BROSKE D. Protocol for laboratory testing of SCR catalyst[M]. 2nd edition.America:Electric Power Research Institute, 2007. [8] Guideline for the testing of DeNOx catalysts:VGB-R 302 H[S]. 2010. [9] 张军, 姚杰, 庄柯, 等. 火电厂SCR脱硝催化剂质量现状[J]. 中国电力, 2017, 50(10):140-143. ZHANG Jun, YAO Jie, ZHUANG Ke, et al. Current status of the SCR De-NOx catalyst quality for thermal power plants[J]. Electric Power, 2017, 50(10):140-143. [10] 李小海, 王虎, 於承志. 平板式脱硝催化剂的基本性能[J]. 化工进展, 2012, 31(S2):147-151. LI Xiaohai, WANG Hu, YU Chengzhi. Properties of the plate-type De-NOx catalysts[J]. Chemical Industry and Engineering Progress, 2012, 31(S2):147-151. [11] SUN Hong, SHU Yun, QUAN Xie, et al. Experimental and modeling study of selective catalytic reduction of NOx with NH3 over wire mesh honeycomb catalysts[J]. Chemical Engineering Journal, 2010, 165(3):769-775. [12] 朱林, 吴碧君, 段玖祥, 等. SCR烟气脱硝催化剂生产与应用现状[J]. 中国电力, 2009, 42(8):61-64. ZHU Lin, WU Bijun, DUAN Jiuxiang, et al. Situation of production and application on selective catalytic reduction flue gas De-NOx catalysts[J]. Electric Power, 2009, 42(8):61-64. [13] HUMS E, GOEBEL H E. Effects of As2O3 on the phase composition of V2O5-MoO3-TiO2 (anatase) DeNOx catalysts[J]. Industrial & Engineering Chemistry Research, 1991, 30(8):1814-1818. [14] LU Q, SU S H, FEN S Y, et al. The DeNOx characteristics of V/Ti plate SCR catalysts[J]. Advanced Materials Research, 2012, 356-360:1712-1715. [15] 苗永旗, 姚杰, 肖正雨, 等. 脱硝催化剂工艺特性检测实验台设计验收过程中的若干问题及建议[J]. 电力科技与环保, 2017, 33(5):9-12. MIAO Yongqi, YAO Jie, XIAO Zhengyu, et al. Questions and suggestions for design and acceptance inspection of SCR catalyst processing property test bench[J]. Electric Power Technology and Environmental Protection, 2017, 33(5):9-12. [16] BROSKE D. Protocol for laboratory testing SCR catalyst samples[M]. America:Electric Power Research Institute, 2006. [17] 王康, 朱林, 刘涛, 等. SCR脱硝催化剂检测与性能评价实验台的设计与建设[J]. 中国电力, 2016, 49(7):157-161. WANG Kang, ZHU Lin, LIU Tao, et al. Design and construction of the experimental platform for SCR denitration catalyst testing and performance evaluation[J]. Electric Power, 2016, 49(7):157-161. [18] 姚杰. SCR燃煤烟气脱硝催化剂制备及脱硝系统的数值模拟[D]. 南京:东南大学, 2014. [19] 晏敏, 赵凯, 朱跃. 燃煤电厂运行中脱硝催化剂的性能检测评价与分析[J]. 中国电力, 2016, 49(7):168-172. YAN Min, ZHAO Kai, ZHU Yue. Performance assessment and analysis of denitration catalyst in coal-fired power plant[J]. Electric Power, 2016, 49(7):168-172. [20] 雷达, 金保升. 燃煤电站SCR内烟气流场及还原剂浓度场模拟与优化[J]. 煤炭学报, 2009, 34(3):394-398. LEI Da, JIN Baosheng. Numerical simulation and optimization of flue gas flow field and reagent concentration field in coal fired power station SCR system[J]. Journal of China Coal Society, 2009, 34(3):394-398. |