[1] Kane R D, Cayard M S. Assessment of corrosivity in refinery sour water systems[J]. Corrosion, 2009, 16(8): 301-311.
[2] Ou G F, Jin H Z, Xie H P, et al. Prediction of ammonium salt deposition in hydro processing air cooler tubes[J]. Engineering Failure Analysis, 2011, 18(6): 1458-1464.
[3] Toba K, Ueyama M, Kawano K, et al. Corrosion of carbon steel and alloys in concentrated ammonium chloride solutions[J]. Corrosion, 2012, 68(11): 1049-1056.
[4] Sun A D, Fan D Y. Prediction monitoring and control of ammonium chloride corrosion in refining processes[C]//NACE International Corrosion. Houston: NACE International Publications Division, 2010: 10359.
[5] Kane R D, Horvath R J, Cavard M S. Major improvements in reactor effluent air cooler reliability[J]. Hydrocarbon Processing, 2006, 85(9): 99-111.
[6] 偶国富, 王宽心, 刘慧慧, 等. 空气冷却器系统铵盐沉积及影响因素研究[J]. 油炼制与化工, 2013, 43(12): 39-43.
[7] Wu Y M. Calculations estimate process stream depositions[J]. Oil and Gas Journal, 1993, 92(1): 38-41.
[8] 洪惠芬. 石化多相流管道系统冲蚀预测及应用软件开发[D]. 杭州: 浙江理工大学, 2010: 30-31.
[9] 耿大钊, 陈曦, 邵之江, 等. 基于COM 技术的MATLAB与Aspen Plus 接口及高级应用[J]. 化工自动化及仪表, 2006, 33(3): 30-34.
[10] Ou G F, Wang K X, Zhan J L, et al. Failure analysis of a reactor effluent air cooler[J]. Engineering Failure Analysis, 2013, 31: 387-393.